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421 peer-reviewed articles • 21,058 peer-reviewed citations • Sorted by year • Download PDF (PDF by citations)
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1Unlocking Single‐Particle Multiparametric Sensing: Decoupling Temperature and Viscosity Readouts through Upconverting Polarized Spectroscopy
Small Methods, 2025, 9,
9.07Citations (PDF)
2Multifunctional azo-BODIPY-functionalised upconversion nanoparticles as sensors of hypoxia in biological environments5.15Citations (PDF)
3Intrinsic optical bistability of photon avalanching nanocrystals
Nature Photonics, 2025, 19, 212-218
29.037Citations (PDF)
4Luminescence Fingerprint of Intracellular NIR-II Gold Nanocluster Transformation: Implications for Sensing and Imaging
ACS Nano, 2025, 19, 7821-7834
15.312Citations (PDF)
5Magnetic hyperthermia-triggered multi-functional thermo-responsive lipid nanoparticles for enhanced paclitaxel release and cytotoxicity
Nanoscale Advances, 2025, 7, 4024-4038
4.42Citations (PDF)
6Infrared emitting lanthanide doped nanoparticles provide sensing capabilities to coronary implants0.05Citations (PDF)
7PEGylating Ag2S Semiconductor Nanocrystals for Pharmacokinetics Tracking: Insights from NIR Luminescence Imaging
ACS Omega, 2025, 10, 28351-28361
4.25Citations (PDF)
8Luminescence-enabled three-dimensional temperature bioimaging13.711Citations (PDF)
9Two photon-responsive gold nanocapsules enable targeted photothermal hyperthermia of chemoresistant melanoma: injection-route-dependent efficacy and renal evidence of fragment clearance5.51Citations (PDF)
10Ce6-DNAzyme-Loaded Metal–Organic Framework Theranostic Agents for Boosting miRNA Imaging-Guided Photodynamic Therapy in Breast Cancer
ACS Nano, 2025, 19, 27873-27889
15.330Citations (PDF)
11Enhanced Cell Uptake of Rhodamine B for Photodynamic Therapy under Hypoxic Conditions Using Sepia Melanin Nanoparticles
ACS Applied Nano Materials, 2025, 8, 16328-16339
5.37Citations (PDF)
12Early in vivo detection of denervation‐induced atrophy by luminescence transient nanothermometry2.010Citations (PDF)
13Brownian Motion Governs the Plasmonic Enhancement of Colloidal Upconverting Nanoparticles
Nano Letters, 2024, 24, 3785-3792
8.79Citations (PDF)
14Near-infrared II fluorescence imaging49.3289Citations (PDF)
15PEGylated Opto-Magnetic Gold and Silver Sulfide Iron Oxide Nanoprobes for Synergistic Photothermal Therapy
ACS Applied Nano Materials, 2024, 7, 13959-13972
5.37Citations (PDF)
16Finite element modeling of plasmonic resonances in photothermal gold nanoparticles embedded in cells
Nanoscale Advances, 2024, 6, 4635-4646
4.410Citations (PDF)
17New Insights in Luminescence and Quenching Mechanisms of Ag2S Nanocrystals through Temperature-Dependent Spectroscopy4.214Citations (PDF)
18Synergistic Enhancement of Photodynamic Cancer Therapy with Mesenchymal Stem Cells and Theranostic Nanoparticles8.015Citations (PDF)
19In vivo grading of lipids in fatty liver by near‐infrared autofluorescence and reflectance2.02Citations (PDF)
20Tuning Phonon Energies in Lanthanide‐doped Potassium Lead Halide Nanocrystals for Enhanced Nonlinearity and Upconversion14.452Citations (PDF)
21(INVITED)Adjustable near-infrared fluorescence lifetime emission of biocompatible rare-earth-doped nanoparticles for in vivo multiplexing
Optical Materials: X, 2023, 17, 100225
1.18Citations (PDF)
22Mn5+ Lifetime‐Based Thermal Imaging in the Optical Transparency Windows Through Skin‐Mimicking Tissue Phantom7.044Citations (PDF)
23Frontispiz: Tuning Phonon Energies in Lanthanide‐doped Potassium Lead Halide Nanocrystals for Enhanced Nonlinearity and Upconversion
Angewandte Chemie, 2023, 135,
1.40Citations (PDF)
24Bias in Intracellular Luminescence Thermometry: The Case of the Green Fluorescent Protein7.019Citations (PDF)
25Critical evaluation of the thermometric performance of ratiometric luminescence thermometers based on Ba3(VO4)2:Mn5+,Nd3+ for deep-tissue thermal imaging5.123Citations (PDF)
26Lanthanide doped nanoparticles for reliable and precise luminescence nanothermometry in the third biological window
Nanoscale Advances, 2023, 5, 3664-3670
4.421Citations (PDF)
273D Optical Coherence Thermometry Using Polymeric Nanogels
Advanced Materials, 2023, 35,
24.511Citations (PDF)
28Exploring the Origin of the Thermal Sensitivity of Near-Infrared-II Emitting Rare Earth Nanoparticles8.010Citations (PDF)
29Ag2S Biocompatible Ensembles as Dual OCT Contrast Agents and NIR Ocular Imaging Probes
Small, 2023, 19,
11.510Citations (PDF)
30A Generalized Approach to Photon Avalanche Upconversion in Luminescent Nanocrystals
Nano Letters, 2023, 23, 7100-7106
8.750Citations (PDF)
31Time-Dependent Changes in Muscle IGF1-IGFBP5-PAPP System after Sciatic Denervation4.43Citations (PDF)
32Neural Networks Push the Limits of Luminescence Lifetime Nanosensing
Advanced Materials, 2023, 35,
24.517Citations (PDF)
33Enhanced brightness of ultra-small gold nanoparticles in the second biological window through thiol ligand shell control
Journal of Materials Chemistry C, 2023, 11, 14714-14724
5.19Citations (PDF)
34Bias-free multiparametric luminescence sensing by a single upconverting particle
EPJ Web of Conferences, 2023, 287, 09011
0.30Citations (PDF)
35Improving optical trapping of a single upconverting nanoparticle by plasmonic structure
EPJ Web of Conferences, 2023, 287, 04015
0.30Citations (PDF)
36Ion-induced bias in Ag2S luminescent nanothermometers
Nanoscale, 2023, 15, 17956-17962
5.04Citations (PDF)
37Optical trapping of optical nanoparticles: Fundamentals and applications
Opto-Electronic Science, 2023, 2, 230019
16.228Citations (PDF)
38Nanoprobes for Biomedical Imaging with Tunable Near‐Infrared Optical Properties Obtained via Green Synthesis3.55Citations (PDF)
39Reliable and Remote Monitoring of Absolute Temperature during Liver Inflammation via Luminescence‐Lifetime‐Based Nanothermometry
Advanced Materials, 2022, 34,
24.595Citations (PDF)
40Electrospraying as a Technique for the Controlled Synthesis of Biocompatible PLGA@Ag2S and PLGA@Ag2S@SPION Nanocarriers with Drug Release Capability
Pharmaceutics, 2022, 14, 214
4.916Citations (PDF)
41Boosting the Near-Infrared Emission of Ag2S Nanoparticles by a Controllable Surface Treatment for Bioimaging Applications8.045Citations (PDF)
42Multichannel Fluorescence Microscopy: Advantages of Going beyond a Single Emission4.119Citations (PDF)
43Lanthanide doped nanoheaters with reliable and absolute temperature feedback
Physica B: Condensed Matter, 2022, 631, 413652
2.720Citations (PDF)
44Multiphoton imaging of melanoma 3D models with plasmonic nanocapsules
Acta Biomaterialia, 2022, 142, 308-319
9.318Citations (PDF)
45Bismuth Selenide Nanostructured Clusters as Optical Coherence Tomography Contrast Agents: Beyond Gold-Based Particles
ACS Photonics, 2022, 9, 559-566
6.013Citations (PDF)
46Optical detection of atherosclerosis at molecular level by optical coherence tomography: An in vitro study3.68Citations (PDF)
47Clickable Albumin Nanoparticles for Pretargeted Drug Delivery toward PD-L1 Overexpressing Tumors in Combination Immunotherapy
Bioconjugate Chemistry, 2022, 33, 821-828
3.814Citations (PDF)
48A zero-field single-molecule magnet with luminescence thermometry capabilities containing soft donors
Journal of Materials Chemistry C, 2022, 10, 13946-13953
5.131Citations (PDF)
49Quantitative Comparison of the Light-to-Heat Conversion Efficiency in Nanomaterials Suitable for Photothermal Therapy8.0105Citations (PDF)
50Luminescence Thermometry for Brain Activity Monitoring: A Perspective3.521Citations (PDF)
51Less is more: dimensionality reduction as a general strategy for more precise luminescence thermometry19.984Citations (PDF)
52Thermoresponsive Polymeric Nanolenses Magnify the Thermal Sensitivity of Single Upconverting Nanoparticles
Small, 2022, 18,
11.518Citations (PDF)
53Temperature Dependence of Water Absorption in the Biological Windows and Its Impact on the Performance of Ag2S Luminescent Nanothermometers2.812Citations (PDF)
54Optomagnetic nanofluids for controlled brain hyperthermia: a critical study
Nanoscale, 2022, 14, 16208-16219
5.05Citations (PDF)
55Synthesis of novel hybrid mesoporous gold iron oxide nanoconstructs for enhanced catalytic reduction and remediation of toxic organic pollutants
RSC Advances, 2022, 12, 35989-36001
4.46Citations (PDF)
56Doping Lanthanide Ions in Colloidal Semiconductor Nanocrystals for Brighter Photoluminescence
Chemical Reviews, 2021, 121, 1425-1462
52.5227Citations (PDF)
57Switching to the brighter lane: pathways to boost the absorption of lanthanide-doped nanoparticles
Nanoscale Horizons, 2021, 6, 209-230
6.542Citations (PDF)
58Molecular Imaging of Infarcted Heart by Biofunctionalized Gold Nanoshells8.812Citations (PDF)
59Reaching Deeper: Absolute In Vivo Thermal Reading of Liver by Combining Superbright Ag2S Nanothermometers and In Silico Simulations
Advanced Science, 2021, 8,
12.619Citations (PDF)
60Luminescence based temperature bio-imaging: Status, challenges, and perspectives10.4148Citations (PDF)
61Hyperspectral Imaging and Optical Trapping: Complementary Tools for Assessing Direction‐Dependent Polarized Emission from Single Upconverting LiYF4:Yb3+/Er3+ Microparticles7.023Citations (PDF)
62Infrared‐Emitting Multimodal Nanostructures for Controlled In Vivo Magnetic Hyperthermia
Advanced Materials, 2021, 33,
24.578Citations (PDF)
63Going Above and Beyond: A Tenfold Gain in the Performance of Luminescence Thermometers Joining Multiparametric Sensing and Multiple Regression9.267Citations (PDF)
64In Vivo Near‐Infrared Imaging Using Ternary Selenide Semiconductor Nanoparticles with an Uncommon Crystal Structure
Small, 2021, 17,
11.58Citations (PDF)
65Laser Refrigeration by an Ytterbium‐Doped NaYF4 Microspinner
Small, 2021, 17,
11.515Citations (PDF)
66Nanojet Trapping of a Single Sub‐10 nm Upconverting Nanoparticle in the Full Liquid Water Temperature Range
Small, 2021, 17,
11.528Citations (PDF)
67Near infrared bioimaging and biosensing with semiconductor and rare-earth nanoparticles: recent developments in multifunctional nanomaterials
Nanoscale Advances, 2021, 3, 6310-6329
4.441Citations (PDF)
68Advances and challenges for fluorescence nanothermometry
Nature Methods, 2020, 17, 967-980
24.6632Citations (PDF)
69Autofluorescence-Free In Vivo Imaging Using Polymer-Stabilized Nd3+-Doped YAG Nanocrystals8.026Citations (PDF)
70The near‐infrared autofluorescence fingerprint of the brain2.013Citations (PDF)
71Biological studies of an ICG-tagged aptamer as drug delivery system for malignant melanoma4.026Citations (PDF)
72Cr3+based nanocrystalline luminescent thermometers operating in a temporal domain2.738Citations (PDF)
73Ag2S Nanoheaters with Multiparameter Sensing for Reliable Thermal Feedback during In Vivo Tumor Therapy17.0107Citations (PDF)
74Exploring Single-Nanoparticle Dynamics at High Temperature by Optical Tweezers
Nano Letters, 2020, 20, 8024-8031
8.732Citations (PDF)
75Accurate In Vivo Nanothermometry through NIR‐II Lanthanide Luminescence Lifetime
Small, 2020, 16,
11.5140Citations (PDF)
76Instantaneous In Vivo Imaging of Acute Myocardial Infarct by NIR‐II Luminescent Nanodots
Small, 2020, 16,
11.542Citations (PDF)
77Ultrafast photochemistry produces superbright short-wave infrared dots for low-dose in vivo imaging13.797Citations (PDF)
78In Vivo Spectral Distortions of Infrared Luminescent Nanothermometers Compromise Their Reliability
ACS Nano, 2020, 14, 4122-4133
15.3124Citations (PDF)
79Standardizing luminescence nanothermometry for biomedical applications
Nanoscale, 2020, 12, 14405-14421
5.0382Citations (PDF)
8010-Fold Quantum Yield Improvement of Ag2S Nanoparticles by Fine Compositional Tuning8.038Citations (PDF)
81Plasmonic Copper Sulfide Nanoparticles Enable Dark Contrast in Optical Coherence Tomography8.829Citations (PDF)
82Eu3+ luminescent ions detect water density anomaly
Journal of Luminescence, 2020, 223, 117263
3.53Citations (PDF)
83Investigation of the concentration- and temperature-dependent motion of colloidal nanoparticles
Nanoscale, 2020, 12, 12561-12567
5.010Citations (PDF)
84Femtosecond Laser Writing of Optical Waveguides by Self-Induced Multiple Refocusing in LiTaO3 Crystal
Journal of Lightwave Technology, 2019, 37, 3452-3458
3.527Citations (PDF)
85Single‐Cell Biodetection by Upconverting Microspinners
Small, 2019, 15,
11.526Citations (PDF)
86Upconverting Nanorockers for Intracellular Viscosity Measurements During Chemotherapy
Advanced Biology, 2019, 3,
3.418Citations (PDF)
87Perspectives for Ag2S NIR-II nanoparticles in biomedicine: from imaging to multifunctionality
Nanoscale, 2019, 11, 19251-19264
5.093Citations (PDF)
88Upconversion nanoparticles for in vivo applications: limitations and future perspectives2.381Citations (PDF)
89Infrared fluorescence imaging of infarcted hearts with Ag2S nanodots
Nano Research, 2019, 12, 749-757
8.648Citations (PDF)
90Thulium doped LaF3 for nanothermometry operating over 1000 nm
Nanoscale, 2019, 11, 8864-8869
5.044Citations (PDF)
91Magnetic Nanoplatelets for High Contrast Cardiovascular Imaging by Magnetically Modulated Optical Coherence Tomography
ChemPhotoChem, 2019, 3, 529-539
2.623Citations (PDF)
92Synthesis and characterization of Ag2S and Ag2S/Ag2(S,Se) NIR nanocrystals
Nanoscale, 2019, 11, 9194-9200
5.020Citations (PDF)
93pH dependence of water anomaly temperature investigated by Eu(III) cryptate luminescence3.412Citations (PDF)
94Optomagnetic Nanoplatforms for In Situ Controlled Hyperthermia17.067Citations (PDF)
95Lifetime-Encoded Infrared-Emitting Nanoparticles for in Vivo Multiplexed Imaging
ACS Nano, 2018, 12, 4362-4368
15.3166Citations (PDF)
96Light‐Activated Upconverting Spinners7.018Citations (PDF)
97Upconverting Nanoparticle to Quantum Dot Förster Resonance Energy Transfer: Increasing the Efficiency through Donor Design
ACS Photonics, 2018, 5, 2261-2270
6.076Citations (PDF)
98Optical Forces at the Nanoscale: Size and Electrostatic Effects
Nano Letters, 2018, 18, 602-609
8.742Citations (PDF)
99Upconverting nanocomposites with combined photothermal and photodynamic effects
Nanoscale, 2018, 10, 791-799
5.065Citations (PDF)
100On the change of paraelectric behavior of water at T = T* = 60 °C as a polar liquid
Ferroelectrics, 2018, 533, 108-114
0.60Citations (PDF)
101Reliability of rare-earth-doped infrared luminescent nanothermometers
Nanoscale, 2018, 10, 22319-22328
5.0168Citations (PDF)
102In Vivo Contactless Brain Nanothermometry17.095Citations (PDF)
103In Vivo Early Tumor Detection and Diagnosis by Infrared Luminescence Transient Nanothermometry17.0108Citations (PDF)
104Core–shell rare-earth-doped nanostructures in biomedicine
Nanoscale, 2018, 10, 12935-12956
5.075Citations (PDF)
105Compositional Tuning of Light-to-Heat Conversion Efficiency and of Optical Properties of Superparamagnetic Iron Oxide Nanoparticles
Journal of Physical Chemistry C, 2018, 122, 16389-16396
3.116Citations (PDF)
106Invited Article: Experimental evaluation of gold nanoparticles as infrared scatterers for advanced cardiovascular optical imaging
APL Photonics, 2018, 3,
4.318Citations (PDF)
107The Temperature of an Optically Trapped, Rotating Microparticle
ACS Photonics, 2018, 5, 3772-3778
6.032Citations (PDF)
108Rare-earth-doped fluoride nanoparticles with engineered long luminescence lifetime for time-gated in vivo optical imaging in the second biological window
Nanoscale, 2018, 10, 17771-17780
5.0108Citations (PDF)
109Beyond Phototherapy: Recent Advances in Multifunctional Fluorescent Nanoparticles for Light‐Triggered Tumor Theranostics17.063Citations (PDF)
110Optical Nanoparticles for Cardiovascular Imaging7.033Citations (PDF)
111Effect of H2O and D2O Thermal Anomalies on the Luminescence of Eu3+ Aqueous Complexes
Journal of Physical Chemistry C, 2018, 122, 14838-14845
3.118Citations (PDF)
112Plug and Play Anisotropy-Based Nanothermometers
ACS Photonics, 2018, 5, 2676-2681
6.09Citations (PDF)
113Nd 3+ ions in nanomedicine: Perspectives and applications
Optical Materials, 2017, 63, 185-196
3.969Citations (PDF)
114Dynamic single gold nanoparticle visualization by clinical intracoronary optical coherence tomography
Journal of Biophotonics, 2017, 10, 674-682
2.025Citations (PDF)
115Time resolved spectroscopy of infrared emitting Ag2S nanocrystals for subcutaneous thermometry
Nanoscale, 2017, 9, 2505-2513
5.053Citations (PDF)
116Unveiling Molecular Changes in Water by Small Luminescent Nanoparticles
Small, 2017, 13,
11.525Citations (PDF)
117In Vivo Ischemia Detection by Luminescent Nanothermometers8.885Citations (PDF)
118Ag/Ag2S Nanocrystals for High Sensitivity Near‐Infrared Luminescence Nanothermometry17.0143Citations (PDF)
119Quantum Dots Emitting in the Third Biological Window as Bimodal Contrast Agents for Cardiovascular Imaging17.035Citations (PDF)
120Persistent luminescence nanothermometers3.036Citations (PDF)
121In Vivo Subcutaneous Thermal Video Recording by Supersensitive Infrared Nanothermometers17.0201Citations (PDF)
122Core–Shell Engineering to Enhance the Spectral Stability of Heterogeneous Luminescent Nanofluids2.89Citations (PDF)
123Optical trapping for biosensing: materials and applications5.559Citations (PDF)
124Development and Investigation of Ultrastable PbS/CdS/ZnS Quantum Dots for Near‐Infrared Tumor Imaging2.825Citations (PDF)
125In Vivo Luminescence Nanothermometry: from Materials to Applications7.0314Citations (PDF)
126Gold nanoshells: Contrast agents for cell imaging by cardiovascular optical coherence tomography
Nano Research, 2017, 11, 676-685
8.647Citations (PDF)
127Two-photon luminescence thermometry: towards 3D high-resolution thermal imaging of waveguides
Optics Express, 2016, 24, 16156
3.015Citations (PDF)
128Neodymium‐Based Stoichiometric Ultrasmall Nanoparticles for Multifunctional Deep‐Tissue Photothermal Therapy
Advanced Optical Materials, 2016, 4, 782-789
7.095Citations (PDF)
129LaF3 core/shell nanoparticles for subcutaneous heating and thermal sensing in the second biological-window3.092Citations (PDF)
130Inorganic nanoparticles for optical bioimaging21.6194Citations (PDF)
131All-optical thermal microscopy of laser-excited waveguides
Optics Letters, 2016, 41, 2061
3.02Citations (PDF)
132Optical lattice-like cladding waveguides by direct laser writing: fabrication, luminescence, and lasing
Optics Letters, 2016, 41, 2169
3.025Citations (PDF)
133Femtosecond laser written waveguides with MoS_2 as satuable absorber for passively Q-switched lasing2.631Citations (PDF)
134Overcoming Autofluorescence: Long‐Lifetime Infrared Nanoparticles for Time‐Gated In Vivo Imaging
Advanced Materials, 2016, 28, 10188-10193
24.5124Citations (PDF)
135Infrared‐Emitting QDs for Thermal Therapy with Real‐Time Subcutaneous Temperature Feedback
Advanced Functional Materials, 2016, 26, 6060-6068
17.0138Citations (PDF)
136Subtissue Imaging and Thermal Monitoring of Gold Nanorods through Joined Encapsulation with Nd‐Doped Infrared‐Emitting Nanoparticles
Small, 2016, 12, 5394-5400
11.545Citations (PDF)
137Optical Torques on Upconverting Particles for Intracellular Microrheometry
Nano Letters, 2016, 16, 8005-8014
8.783Citations (PDF)
138On the existence of two states in liquid water: impact on biological and nanoscopic systems0.148Citations (PDF)
139In vivoautofluorescence in the biological windows: the role of pigmentation
Journal of Biophotonics, 2016, 9, 1059-1067
2.0111Citations (PDF)
140Thermal Scanning at the Cellular Level by an Optically Trapped Upconverting Fluorescent Particle
Advanced Materials, 2016, 28, 2421-2426
24.5153Citations (PDF)
141Thermo-optical and spectroscopic properties of Nd:YAG fine grain ceramics: towards a better performance than the Nd:YAG laser crystals
Laser Physics Letters, 2016, 13, 025004
1.410Citations (PDF)
142Determining the 3D orientation of optically trapped upconverting nanorods by in situ single-particle polarized spectroscopy
Nanoscale, 2016, 8, 300-308
5.063Citations (PDF)
143Stress-induced waveguides in Nd:YAG by simultaneous double-beam irradiation with femtosecond pulses
Optical Materials, 2016, 51, 84-88
3.93Citations (PDF)
144NIR fluorescence quenching by OH acceptors in the Nd3+ doped KY3F10 nanoparticles synthesized by microwave-hydrothermal treatment6.015Citations (PDF)
145Unveiling in Vivo Subcutaneous Thermal Dynamics by Infrared Luminescent Nanothermometers
Nano Letters, 2016, 16, 1695-1703
8.7316Citations (PDF)
146Real-time deep-tissue thermal sensing with sub-degree resolution by thermally improved Nd3+:LaF3 multifunctional nanoparticles
Journal of Luminescence, 2016, 175, 149-157
3.579Citations (PDF)
147In Vivo Deep Tissue Fluorescence and Magnetic Imaging Employing Hybrid Nanostructures8.058Citations (PDF)
148Self-monitored photothermal nanoparticles based on core–shell engineering
Nanoscale, 2016, 8, 3057-3066
5.0115Citations (PDF)
149Luminescent nanoprobes for thermal bio-sensing: Towards controlled photo-thermal therapies
Journal of Luminescence, 2016, 169, 394-399
3.564Citations (PDF)
150Neodymium-doped nanoparticles for infrared fluorescence bioimaging: The role of the host2.0124Citations (PDF)
151Hybrid Nanostructures for High‐Sensitivity Luminescence Nanothermometry in the Second Biological Window
Advanced Materials, 2015, 27, 4781-4787
24.5194Citations (PDF)
152PbS/CdS/ZnS Quantum Dots: A Multifunctional Platform for In Vivo Near‐Infrared Low‐Dose Fluorescence Imaging
Advanced Functional Materials, 2015, 25, 6650-6659
17.0126Citations (PDF)
153Fluorescence imaging of lattice re-distribution on step-index direct laser written Nd:YAG waveguide lasers2.00Citations (PDF)
154Dielectric anomalous response of water at 60 °C
Philosophical Magazine, 2015, 95, 683-690
1.628Citations (PDF)
155Nd:YAG Near‐Infrared Luminescent Nanothermometers
Advanced Optical Materials, 2015, 3, 687-694
7.0304Citations (PDF)
156Yb3+/Tm3+ co-doped NaNbO3 nanocrystals as three-photon-excited luminescent nanothermometers7.6134Citations (PDF)
157Assessing Single Upconverting Nanoparticle Luminescence by Optical Tweezers
Nano Letters, 2015, 15, 5068-5074
8.760Citations (PDF)
158Intratumoral Thermal Reading During Photo‐Thermal Therapy by Multifunctional Fluorescent Nanoparticles17.0321Citations (PDF)
159Enhancing Optical Forces on Fluorescent Up‐Converting Nanoparticles by Surface Charge Tailoring
Small, 2015, 11, 1555-1561
11.523Citations (PDF)
160Gold nanorod assisted intracellular optical manipulation of silica microspheres
Optics Express, 2014, 22, 19735
3.07Citations (PDF)
161Flow effects in the laser-induced thermal loading of optical traps and optofluidic devices
Optics Express, 2014, 22, 23938
3.012Citations (PDF)
162Quantum-dot based nanothermometry in optical plasmonic recording media
Applied Physics Letters, 2014, 105, 181110
3.031Citations (PDF)
163Neodymium‐Doped LaF3 Nanoparticles for Fluorescence Bioimaging in the Second Biological Window
Small, 2014, 10, 1141-1154
11.5213Citations (PDF)
164Quantum Dot Thermometry Evaluation of Geometry Dependent Heating Efficiency in Gold Nanoparticles
Langmuir, 2014, 30, 1650-1658
3.694Citations (PDF)
165Gold nanorods for optimized photothermal therapy: the influence of irradiating in the first and second biological windows
RSC Advances, 2014, 4, 54122-54129
4.434Citations (PDF)
166Er:Yb:NaY2F5O up-converting nanoparticles for sub-tissue fluorescence lifetime thermal sensing
Nanoscale, 2014, 6, 9727
5.0153Citations (PDF)
167Nanoparticles for photothermal therapies
Nanoscale, 2014, 6, 9494-9530
5.01,853Citations (PDF)
168Nd3+ doped LaF3 nanoparticles as self-monitored photo-thermal agents3.0133Citations (PDF)
169Fluorescent Nanothermometers for Intracellular Thermal Sensing
Nanomedicine, 2014, 9, 1047-1062
3.0138Citations (PDF)
170A 2D μ-Raman analysis of low repetition rate femto-waveguides in lithium niobate by using a finite element model
Optical Materials, 2014, 36, 936-940
3.99Citations (PDF)
171Monolithic crystalline cladding microstructures for efficient light guiding and beam manipulation in passive and active regimes3.451Citations (PDF)
1721.3 μm emitting SrF2:Nd3+ nanoparticles for high contrast in vivo imaging in the second biological window
Nano Research, 2014, 8, 649-665
8.6205Citations (PDF)
173Three-dimensional microstructuring of yttrium aluminum garnet crystals for laser active optofluidic applications3.034Citations (PDF)
174Thermal loading in flow-through electroporation microfluidic devices
Lab on A Chip, 2013, 13, 3119-3127
5.121Citations (PDF)
175Heating efficiency of multi-walled carbon nanotubes in the first and second biological windows
Nanoscale, 2013, 5, 7882
5.0117Citations (PDF)
176Water (H2O and D2O) Dispersible NIR-to-NIR Upconverting Yb3+/Tm3+ Doped MF2 (M = Ca, Sr) Colloids: Influence of the Host Crystal
Crystal Growth and Design, 2013, 13, 4906-4913
3.498Citations (PDF)
177Optical trapping of NaYF4:Er3+,Yb3+ upconverting fluorescent nanoparticles
Nanoscale, 2013, 5, 12192
5.071Citations (PDF)
178Enhanced Second Harmonic Generation in Femtosecond Laser Inscribed Double-Cladding Waveguide of Nd:GdCOB Crystal
Journal of Lightwave Technology, 2013, 31, 3873-3878
3.54Citations (PDF)
179Fluorescent Nanothermometers Provide Controlled Plasmonic-Mediated Intracellular Hyperthermia
Nanomedicine, 2013, 8, 379-388
3.053Citations (PDF)
180Subtissue Thermal Sensing Based on Neodymium-Doped LaF3Nanoparticles
ACS Nano, 2013, 7, 1188-1199
15.3377Citations (PDF)
181Fluorescent nano-particles for multi-photon thermal sensing
Journal of Luminescence, 2013, 133, 249-253
3.543Citations (PDF)
182Quantum Dot‐Based Thermal Spectroscopy and Imaging of Optically Trapped Microspheres and Single Cells
Small, 2013, 9, 2162-2170
11.576Citations (PDF)
183Nd3+-doped Ca3Ga2Ge3O12 garnet: A new optical pressure sensor2.041Citations (PDF)
184Femtosecond-laser inscribed double-cladding waveguides in Nd:YAG crystal: a promising prototype for integrated lasers
Optics Letters, 2013, 38, 3294
3.021Citations (PDF)
185Upconversion emission obtained in Yb^3+-Er^3+ doped fluoroindate glasses using silica microspheres as focusing lens
Optics Express, 2013, 21, 10667
3.017Citations (PDF)
186Second harmonic generation of violet light in femtosecond-laser-inscribed BiB_3O_6 cladding waveguides2.611Citations (PDF)
187Ion migration assisted inscription of high refractive index contrast waveguides by femtosecond laser pulses in phosphate glass
Optics Letters, 2013, 38, 5248
3.067Citations (PDF)
188Simultaneous generation of violet, blue, and green lasers using Nd:YAl3(BO3)4 channel waveguides under pumping at 815 nm2.03Citations (PDF)
189Second Harmonic Generation of Violet Light in Femtosecond-Laser-Inscribed BiB3O6Cladding Waveguides
MATEC Web of Conferences, 2013, 8, 06011
0.30Citations (PDF)
190Compact, highly efficient ytterbium doped bismuthate glass waveguide laser
Optics Letters, 2012, 37, 1691
3.045Citations (PDF)
191Ultrafast laser fabrication of low-loss waveguides in chalcogenide glass with 065  dB/cm loss
Optics Letters, 2012, 37, 1418
3.048Citations (PDF)
192Femtosecond laser inscribed cladding waveguides in Nd:YAG ceramics: Fabrication, fluorescence imaging and laser performance
Optics Express, 2012, 20, 18620
3.088Citations (PDF)
193μ-Raman spectroscopy characterization of LiNbO3 femtosecond laser written waveguides2.011Citations (PDF)
194High Resolution Fluorescence Imaging of Cancers Using Lanthanide Ion-Doped Upconverting Nanocrystals
Cancers, 2012, 4, 1067-1105
3.859Citations (PDF)
195Evaluation of rare earth doped silica sub-micrometric spheres as optically controlled temperature sensors2.023Citations (PDF)
196Quantum dot enabled thermal imaging of optofluidic devices
Lab on A Chip, 2012, 12, 2414
5.128Citations (PDF)
197Deep tissue bio-imaging using two-photon excited CdTe fluorescent quantum dots working within the biological window
Nanoscale, 2012, 4, 298-302
5.092Citations (PDF)
198Absorption efficiency of gold nanorods determined by quantum dot fluorescence thermometry3.040Citations (PDF)
199Luminescence nanothermometry
Nanoscale, 2012, 4, 4301
5.01,451Citations (PDF)
200High‐Sensitivity Fluorescence Lifetime Thermal Sensing Based on CdTe Quantum Dots
Small, 2012, 8, 2652-2658
11.5156Citations (PDF)
201Optimum quantum dot size for highly efficient fluorescence bioimaging2.032Citations (PDF)
202Bio-functionalization of ligand-free upconverting lanthanide doped nanoparticles for bio-imaging and cell targeting
Nanoscale, 2012, 4, 3647
5.0108Citations (PDF)
203High-resolution confocal fluorescence thermal imaging of tightly pumped microchip Nd:YAG laser ceramics1.835Citations (PDF)
204Waveguide lasers based on dielectric materials
Optical Materials, 2012, 34, 555-571
3.931Citations (PDF)
205NIR-to-NIR Two-Photon Excited CaF2:Tm3+,Yb3+ Nanoparticles: Multifunctional Nanoprobes for Highly Penetrating Fluorescence Bio-Imaging
ACS Nano, 2011, 5, 8665-8671
15.3422Citations (PDF)
206Fluorescence-Quenching Free Channel Waveguides in Yb:YAG Ceramics by Carbon Ion Implantation
Journal of Lightwave Technology, 2011, 29, 1460-1464
3.56Citations (PDF)
207Simultaneous dual-wavelength lasers at 1064 and 1342 nm in femtosecond-laser-written Nd:YVO_4 channel waveguides1.826Citations (PDF)
208Swift nitrogen ion irradiated waveguide lasers in Nd:YAG crystal
Optics Express, 2011, 19, 5522
3.042Citations (PDF)
209Second harmonic and Raman imaging of He^+ implanted KTiOPO_4 waveguides
Optics Express, 2011, 19, 13934
3.017Citations (PDF)
210Whispering-gallery modes in glass microspheres: optimization of pumping in a modified confocal microscope
Optics Letters, 2011, 36, 615
3.027Citations (PDF)
211Femtosecond laser writing of multifunctional optical waveguides in a Nd:YVO_4+KTP hybrid system
Optics Letters, 2011, 36, 975
3.019Citations (PDF)
212Thermal optimization and erasing of Nd:YAG proton beam written waveguides
Optics Letters, 2011, 36, 3278
3.07Citations (PDF)
213Direct laser writing of near-IR step-index buried channel waveguides in rare earth doped YAG
Optics Letters, 2011, 36, 3395
3.038Citations (PDF)
214CdTe Quantum Dots as Nanothermometers: Towards Highly Sensitive Thermal Imaging
Small, 2011, 7, 1774-1778
11.5137Citations (PDF)
215Non-linear niobate nanocrystals for two-photon imaging
Optical Materials, 2011, 33, 258-266
3.920Citations (PDF)
216Photoluminescence of Er-doped silicon-rich oxide thin films with high Al concentrations
Physics Procedia, 2011, 13, 54-57
1.10Citations (PDF)
217Characterization of active waveguides fabricated by ultralow-fluence swift heavy ion irradiation in lithium niobate crystals2.911Citations (PDF)
218Self-frequency-doubling of ultrafast laser inscribed neodymium doped yttrium aluminum borate waveguides3.025Citations (PDF)
219Origin of the refractive index modification of femtosecond laser processed doped phosphate glass2.09Citations (PDF)
220Microspectroscopy of ultrafast laser inscribed channel waveguides in Yb:tungstate crystals3.07Citations (PDF)
221Luminescence Quantum Efficiency of ${\rm Nd}^{3+}{\colon}{\rm Y}_{3}{\rm Al}_{5}{\rm O}_{12}$ Garnet Laser Ceramics Determined by Pump-Induced Line Broadening1.38Citations (PDF)
222Thermal stability of microstructural and optical modifications induced in sapphire by ultrafast laser filamentation2.017Citations (PDF)
223Ultrafast laser inscription of bistable and reversible waveguides in strontium barium niobate crystals3.011Citations (PDF)
224Continuous wave laser generation at 1064 nm in femtosecond laser inscribed Nd:YVO4 channel waveguides3.049Citations (PDF)
225Control of the local devitrification on oxyfluoride glass doped with Er3+ ions under diode laser irradiation2.01Citations (PDF)
226Temperature Sensing Using Fluorescent Nanothermometers
ACS Nano, 2010, 4, 3254-3258
15.31,446Citations (PDF)
227Carbon ion implanted Nd:MgO:LiNbO_3 optical channel waveguides: an intermediate step between light and heavy ion implanted waveguides
Optics Express, 2010, 18, 5951
3.016Citations (PDF)
228Optical channel waveguides in Nd:LGS laser crystals produced by proton implantation
Optics Express, 2010, 18, 16258
3.012Citations (PDF)
229Nanoparticles for highly efficient multiphoton fluorescence bioimaging
Optics Express, 2010, 18, 23544
3.078Citations (PDF)
23070% slope efficiency from an ultrafast laser-written Nd:GdVO_4 channel waveguide laser
Optics Express, 2010, 18, 24994
3.081Citations (PDF)
231Mirrorless buried waveguide laser in monoclinic double tungstates fabricated by a novel combination of ion milling and liquid phase epitaxy
Optics Express, 2010, 18, 26937
3.028Citations (PDF)
232Thermally resistant waveguides fabricated in Nd:YAG ceramics by crossing femtosecond damage filaments
Optics Letters, 2010, 35, 330
3.039Citations (PDF)
233Femtosecond-laser-written, stress-induced Nd:YVO_4 waveguides preserving fluorescence and Raman gain
Optics Letters, 2010, 35, 916
3.052Citations (PDF)
234Swift heavy-ion irradiated active waveguides in Nd:YAG crystals: fabrication and laser generation
Optics Letters, 2010, 35, 3276
3.041Citations (PDF)
235Microstructuring of Nd:YAG crystals by proton-beam writing
Optics Letters, 2010, 35, 3898
3.022Citations (PDF)
236CdSe Quantum Dots for Two-Photon Fluorescence Thermal Imaging
Nano Letters, 2010, 10, 5109-5115
8.7316Citations (PDF)
237Intracellular imaging of HeLa cells by non-functionalized NaYF4 : Er3+, Yb3+upconverting nanoparticles
Nanoscale, 2010, 2, 495-498
5.0186Citations (PDF)
238Ultrafast laser writing of optical waveguides in ceramic Yb:YAG: a study of thermal and non-thermal regimes2.551Citations (PDF)
239Near-field local enhancement by ordered arrays of sub-wavelength scattering centers fabricated by femtosecond ablation1.81Citations (PDF)
240Room-temperature continuous wave laser oscillations in Nd:YAG ceramic waveguides produced by carbon ion implantation1.834Citations (PDF)
241Nonlinear refraction and absorption through phase transition in a Nd:SBN laser crystal
Physical Review B, 2009, 79,
3.411Citations (PDF)
242Near-field imaging of femtosecond laser ablated sub-λ/4 holes in lithium niobate
Applied Physics Letters, 2009, 95, 181103
3.08Citations (PDF)
243Microstructural imaging of high repetition rate ultrafast laser written LiTaO3 waveguides3.011Citations (PDF)
244High resolution fluorescence imaging of damage regions in H+ ion implanted Nd:MgO:LiNbO3 channel waveguides3.039Citations (PDF)
245Rare‐Earth Spontaneous Emission Control in Three‐Dimensional Lithium Niobate Photonic Crystals
Advanced Materials, 2009, 21, 3526-3530
24.557Citations (PDF)
246Nanosecond Nd3+:LuVO4self-Raman laser
Laser Physics Letters, 2009, 6, 374-379
1.461Citations (PDF)
247Q-switched nanosecond Nd3+:Ca(NbO3)2crystalline self-Raman laser with single-step cascade SE (λSE= 1.0615μm of4F3/2→4I11/2channel) → SRS (λSt1 = 1.1741μm of ωSRS≈ 904 cm-1promotion vibration mode) wavelength conversion
Laser Physics Letters, 2009, 6, 782-787
1.420Citations (PDF)
248Refractive index change mechanisms in femtosecond laser written ceramic Nd:YAG waveguides: micro-spectroscopy experiments and beam propagation calculations1.8152Citations (PDF)
249Suppression of Q-switching instabilities in a passively mode-locked Nd:Y3Al5O12 ceramic laser
Optical Materials, 2009, 31, 725-728
3.94Citations (PDF)
250Confocal micro-luminescence of Zn-diffused LiNbO3:Tm3+ channel waveguides
Journal of Luminescence, 2009, 129, 1698-1701
3.52Citations (PDF)
251Luminescence of Er-doped silicon oxide–zirconia thin films
Journal of Luminescence, 2009, 129, 696-703
3.54Citations (PDF)
252Optical spectroscopy of neodymium-doped calcium barium niobate ferroelectric crystals
Journal of Luminescence, 2009, 129, 1658-1660
3.56Citations (PDF)
253Ion-implanted optical channel waveguides in neodymium-doped yttrium aluminum garnet transparent ceramics for integrated laser generation
Optics Letters, 2009, 34, 28
3.042Citations (PDF)
254Ion-implanted optical-stripe waveguides in neodymium-doped calcium barium niobate crystals
Optics Letters, 2009, 34, 1438
3.030Citations (PDF)
255High repetition rate UV ultrafast laser inscription of buried channel waveguides in Sapphire: Fabrication and fluorescence imaging via ruby R lines
Optics Express, 2009, 17, 10076
3.018Citations (PDF)
256Axial birefringence induced focus splitting in lithium niobate
Optics Express, 2009, 17, 17970
3.030Citations (PDF)
257Optical channel waveguide in Nd/Ce codoped YAG laser crystal produced by carbon ion implantation
Applied Optics, 2009, 48, 4514
1.87Citations (PDF)
258Anisotropic lattice changes in femtosecond laser inscribed Nd3+:MgO:LiNbO3 optical waveguides2.044Citations (PDF)
259The effect of Nd and Mg doping on the micro-Raman spectra of LiNbO3single-crystals2.315Citations (PDF)
260The effect of the ferroelectric domain walls in the scanning near field optical microscopy response of periodically poled Ba2NaNb5O15and LiNbO3crystals2.34Citations (PDF)
261Multicolour second harmonic generation by strontium barium niobate nanoparticles2.921Citations (PDF)
262Growth of Nanocrystals in a Nd3+–Yb3+ Codoped Oxyfluoride Glass by Laser Irradiation0.61Citations (PDF)
263Near-field-optical-microscopy studies of micro-modifications caused by femtosecond laser irradiation in lithium niobate crystals2.52Citations (PDF)
264Localized desvitrifiation in Er3+-doped strontium barium niobate glass by laser irradiation2.56Citations (PDF)
265Effects of laser light confinement in periodically poled orthorhombic non-centrosymmetric Ba2NaNb5O15 crystals
Laser Physics Letters, 2008, 5, 291-295
1.46Citations (PDF)
266Nonlinear-laser effects in NH4H2PO4 (ADP) and ND4D2PO4 (DADP) single crystals: almost two-octave multi-wavelength Stokes and anti-Stokes combs, cascaded lasing in UV and visible ranges with the involving of the second and third harmonic generation
Laser Physics Letters, 2008, 5, 532-542
1.427Citations (PDF)
267Ionoluminescence of trivalent rare-earth-doped strontium barium niobate
Journal of Luminescence, 2008, 128, 735-737
3.57Citations (PDF)
268Photoluminescence of Er-doped Si-SiO2 and Al–Si-SiO2 sputtered thin films
Journal of Luminescence, 2008, 128, 897-900
3.55Citations (PDF)
269Desvitrification on an oxyfluoride glass doped with Tm3+ and Yb3+ ions under Ar laser irradiation
Journal of Luminescence, 2008, 128, 905-907
3.59Citations (PDF)
270Time-resolved study electronic and thermal contributions to the nonlinear refractive index of Nd3+:SBN laser crystals
Journal of Luminescence, 2008, 128, 1013-1015
3.515Citations (PDF)
271Luminescence of rare earth-doped Si–ZrO2 co-sputtered films
Journal of Luminescence, 2008, 128, 1197-1204
3.522Citations (PDF)
272Damage channeling in femtosecond laser micro-structured SBN crystals
Applied Surface Science, 2008, 255, 3132-3136
6.60Citations (PDF)
273Low‐dose ion implanted active waveguides in Nd 3+ doped near‐stoichiometric lithium niobate: promising candidates for near infrared integrated laser2.03Citations (PDF)
274Luminescence of Rare Earth Ions in Strontium Barium Niobate Around the Phase Transition: The Case of Tm3 + Ions
Ferroelectrics, 2008, 363, 150-162
0.614Citations (PDF)
275Microstructuration induced differences in the thermo-optical and luminescence properties of Nd:YAG fine grain ceramics and crystals2.826Citations (PDF)
276Direct laser writing of three-dimensional photonic structures in Nd:yttrium aluminum garnet laser ceramics3.025Citations (PDF)
277Lanthanide doped strontium barium niobate: Optical spectroscopy and local structure at the impurity sites6.021Citations (PDF)
278Dielectric anomalies in Nd3+ doped Ba2NaNb5O15 laser crystal6.011Citations (PDF)
279Thermal lens and heat generation of Nd:YAG lasers operating at 1.064 and 1.34 μm
Optics Express, 2008, 16, 6317
3.032Citations (PDF)
280Confocal Raman imaging of optical waveguides in LiNbO3 fabricated by ultrafast high-repetition rate laser-writing
Optics Express, 2008, 16, 13979
3.045Citations (PDF)
281Confocal Luminescence Investigations of Two-Beam Direct-UV-Written Silica-On-Silicon Waveguides1.34Citations (PDF)
282Active waveguide in Nd3+:MgO:LiNbO3 crystal produced by low-dose carbon ion implantation3.011Citations (PDF)
283Low-dose O3+ion-implanted active optical planar waveguides in Nd : YAG crystals: guiding properties and micro-luminescence characterization2.910Citations (PDF)
284Investigation of neodymium-diffused yttrium vanadate waveguides by confocal microluminescence2.012Citations (PDF)
285Nd3+→Yb3+resonant energy transfer in the ferroelectricSr0.6Ba0.4Nb2O6laser crystal
Physical Review B, 2008, 77,
3.429Citations (PDF)
286Spectroscopy ofEu3+ions in congruent strontium barium niobate crystals
Physical Review B, 2008, 77,
3.423Citations (PDF)
287Scanning confocal fluorescence imaging and micro-Raman investigations of oxygen implanted channel waveguides in Nd:MgO:LiNbO33.033Citations (PDF)
288Highly efficient laser action in femtosecond-written Nd:yttrium aluminum garnet ceramic waveguides3.0154Citations (PDF)
289Laser action from Yb3+ ions in the ferroelectric and paraelectric phases of strontium barium niobate3.014Citations (PDF)
290Periodic Ferroelectric Domain Structures Characterization by Scanning Near Field Optical Microscopy
Ferroelectrics, 2008, 363, 187-198
0.63Citations (PDF)
291Effects of neodymium incorporation on the structural and luminescence properties of the YAl3(BO3)4–NdAl3(BO3)4system2.310Citations (PDF)
292Thermal lens spectroscopy through phase transition in neodymium doped strontium barium niobate laser crystals
Journal of Applied Physics, 2007, 101, 023113
2.014Citations (PDF)
293Improvement of laser gain by microdomain compensation effects in Nd:SrBa(Nb3O)2 lasers2.04Citations (PDF)
294field optical and micro-luminescence investigations of femtosecond laser micro-structured Nd:YAG crystals
Optics Express, 2007, 15, 3285
3.010Citations (PDF)
295Time resolved confocal luminescence investigations on Reverse Proton Exchange Nd:LiNbO_3 channel waveguides
Optics Express, 2007, 15, 8805
3.024Citations (PDF)
296Femtosecond laser written surface waveguides fabricated in Nd:YAG ceramics
Optics Express, 2007, 15, 13266
3.051Citations (PDF)
297Improvement of MgF2 thin coating films for laser applications
Optical Materials, 2007, 29, 783-787
3.929Citations (PDF)
298Luminescence of lanthanide ions in strontium barium niobate
Journal of Luminescence, 2007, 122-123, 307-310
3.531Citations (PDF)
299Optical spectra of Tm3+-doped YAl3(BO3)4 single crystals0.79Citations (PDF)
300Ultraviolet nanosecond laser-assisted micro-modifications in lithium niobate monitored by Nd3+ luminescence2.55Citations (PDF)
301Lattice micro-modifications induced by Zn diffusion in Nd:LiNbO3 channel waveguides probed by Nd3+ confocal micro-luminescence1.830Citations (PDF)
302BPM simulation of SNOM measurements of waveguide arrays induced by periodically poled BNN crystals3.72Citations (PDF)
303Optical investigation of femtosecond laser induced microstress in neodymium doped lithium niobate crystals
Journal of Applied Physics, 2006, 100, 033521
2.040Citations (PDF)
304High-pressure luminescence in Nd3+-doped MgO:LiNbO3
High Pressure Research, 2006, 26, 341-344
1.011Citations (PDF)
305Optical Properties of Active Ions Around the Ferro-Paraelectric Phase Transition in SBN Crystals
Ferroelectrics, 2006, 337, 33-39
0.65Citations (PDF)
306Femtosecond laser induced micromodifications in Nd:SBN crystals: Amorphization and luminescence inhibition
Journal of Applied Physics, 2006, 100, 113517
2.07Citations (PDF)
307Growth, spectroscopic, and laser properties of Yb^3+-doped Lu_3Al_5O_12 garnet crystal1.8102Citations (PDF)
308Photo-luminescence studies of strontium barium niobate crystals doped with Cr3+ ions
Chemical Physics Letters, 2006, 417, 196-199
2.79Citations (PDF)
309Self-activated Nd3+:Ba2NaNb5O12 optical super-lattices: Micro characterization and non-collinear laser light generation
Optics Communications, 2006, 262, 220-223
2.312Citations (PDF)
310Bi-functional laser and non-linear optical crystals
Optical Materials, 2006, 28, 310-323
3.944Citations (PDF)
311Bistable luminescence of trivalent rare-earth ions in crystals
Journal of Luminescence, 2006, 119-120, 314-317
3.51Citations (PDF)
312Luminescence life time and time-resolved spectroscopy of Cr3+ ions in strontium barium niobate
Journal of Luminescence, 2006, 119-120, 453-456
3.57Citations (PDF)
313Passive Q-switching of a diode pumped Nd3+:CGGG crystal: Benefits of inhomogeneous line broadening and short pulse generation
Optical Materials, 2006, 28, 408-414
3.919Citations (PDF)
314Spectroscopic characterisation of the Tm3+ doped KLa(WO4)2 single crystals
Optical Materials, 2006, 28, 980-987
3.949Citations (PDF)
315Energy transfer processes in the ytterbium doped NdPO4 stoichiometric crystal
Optical Materials, 2006, 28, 1280-1283
3.912Citations (PDF)
316Laser gain in femtosecond microstructured Nd:MgO:LiNbO3 crystals1.829Citations (PDF)
317Phase transition in SrxBa1−xNb2O6ferroelectric crystals probed by Raman spectroscopy2.950Citations (PDF)
318Wide infrared and visible tunability from a Nd3+:Ba2NaNbO15 self-frequency-converter disordered laser crystal
Journal of Applied Physics, 2006, 99, 026105
2.04Citations (PDF)
319Phase transition induced gain depression in Nd[sup 3+]:SBN lasers
Journal of Applied Physics, 2006, 100, 113114
2.01Citations (PDF)
320Continuous-wave diode-pumped Yb:glass laser with near 90% slope efficiency
Applied Physics Letters, 2006, 89, 121101
3.039Citations (PDF)
321Bistable chromatic switching inYb3+-dopedNdPO4crystals
Physical Review B, 2006, 74,
3.417Citations (PDF)
322Intracavity thermal loading measurements and evaluation of the intrinsic fluorescence quantum efficiency in Yb3+:LiNbO3:MgO lasers
Applied Physics Letters, 2006, 89, 091122
3.03Citations (PDF)
323Optical distortions through phase transition in the Nd3+:SBN laser crystal
Applied Physics Letters, 2006, 88, 161116
3.09Citations (PDF)
324Single longitudinal mode laser oscillation from a neodymium aluminium borate stoichiometric crystal
Applied Physics Letters, 2005, 87, 211108
3.015Citations (PDF)
325Cr3+→Nd3+ energy transfer in the YAl3(BO3)4 nonlinear laser crystal
Journal of Applied Physics, 2005, 98, 023103
2.017Citations (PDF)
326Fluorescence quantum efficiency and Auger upconversion losses of the stoichiometric laser crystalNdAl3(BO3)4
Physical Review B, 2005, 72,
3.441Citations (PDF)
327A pump-power-controlled luminescent switcher
Applied Physics Letters, 2005, 86, 011920
3.028Citations (PDF)
328Coherent Light Generation from aNd∶SBNNonlinear Laser Crystal through its Ferroelectric Phase Transition8.271Citations (PDF)
329Temperature dependence of Nd3+↔Yb3+ energy transfer in the YAl3(BO3)4 nonlinear laser crystal
Journal of Applied Physics, 2005, 97, 093510
2.032Citations (PDF)
330Short-pulse generation from a resonantly pumped NdAl_3(BO_3)_4 microchip laser
Optics Letters, 2005, 30, 397
3.020Citations (PDF)
331Improving the performance of a neodymium aluminium borate microchip laser crystal by resonant pumping
Applied Physics Letters, 2004, 85, 715-717
3.023Citations (PDF)
332Thermal hysteresis in the luminescence of Cr3+ ions in Sr0.6Ba0.4 (NbO3)2
Applied Physics Letters, 2004, 84, 2787-2789
3.029Citations (PDF)
333Site-selective study of Nd3+ optical centers in Ca3Sc2Ge3O12 laser garnet crystals
Journal of Applied Physics, 2004, 95, 1774-1779
2.07Citations (PDF)
334TunableNd3+:Ca3Ga2Ge3O12site-selective laser operating around 1.33 μm
Physical Review B, 2004, 70,
3.415Citations (PDF)
335Evaluation of ytterbium doped strontium barium niobate as a potential tunable laser crystal in the visible
Journal of Applied Physics, 2004, 95, 6185-6191
2.038Citations (PDF)
336Continuous-wave laser oscillation at 929nm from a Nd3+-doped LiNbO3:ZnO nonlinear laser crystal: A powerful tool for blue laser light generation
Applied Physics Letters, 2004, 85, 19-21
3.033Citations (PDF)
337Up-conversion luminescence in the NdAl3(BO3)4 (NAB) microchip laser crystal
Optical Materials, 2004, 25, 9-15
3.914Citations (PDF)
338Optical properties of single doped Cr3+ and co-doped Cr3+–Nd3+ aluminum tantalum tellurite glasses6.021Citations (PDF)
339Influence of Nd^3+ and Yb^3+ concentration on the Nd^3+→Yb^3+ energy-transfer efficiency in the YAl_3(BO_3)_4 nonlinear crystal: determination of optimum concentrations for laser applications1.825Citations (PDF)
34074% Slope efficiency from a diode-pumped Yb3+:LiNbO3:MgO laser crystal1.813Citations (PDF)
341Simultaneous generation of coherent light in the red, green and blue from Nd3+ doped non-linear crystals
Optical Materials, 2003, 24, 411-417
3.97Citations (PDF)
342Diode-pumped laser action at 134 µm from the Nd^3+: Ca_3Ga_2Ge_3O_12 garnet crystal: influence of Nd^3+ multicenter distribution1.85Citations (PDF)
343Spectral and thermal properties of quasiphase-matching second-harmonic-generation in Nd3+ :Sr0.6 Ba0.4 (NbO3)2 multiself-frequency-converter nonlinear crystals
Journal of Applied Physics, 2003, 93, 3111-3113
2.049Citations (PDF)
344Spectroscopic study of Y b3+centres in the Y Al3(BO3)4nonlinear laser crystal2.316Citations (PDF)
345Nd3+→Yb3+energy transfer in theYAl3(BO3)4nonlinear laser crystal
Physical Review B, 2003, 68,
3.498Citations (PDF)
346Excited-state absorption in NdAl3(BO3)4 laser crystal
Applied Physics Letters, 2003, 82, 3826-3828
3.07Citations (PDF)
347Rare Earth Ion Doped Non Linear Laser Crystals1.15Citations (PDF)
348Simultaneous generation of coherent light in the three fundamental colors by quasicylindrical ferroelectric domains in Sr0.6Ba0.4(NbO3)2
Applied Physics Letters, 2002, 81, 4106-4108
3.045Citations (PDF)
349Vortex lattice channeling effects in Nb films induced by anisotropic arrays of mesoscopic pinning centers
Physical Review B, 2002, 65,
3.457Citations (PDF)
350Anisotropic pinning enhancement in Nb films with arrays of submicrometric Ni lines
Applied Physics Letters, 2002, 81, 2851-2853
3.031Citations (PDF)
351Order in driven vortex lattices in superconducting Nb films with nanostructured pinning potentials
Physical Review B, 2002, 65,
3.433Citations (PDF)
352Nanopatterning effects on magnetic anisotropy of epitaxial Fe(001) micrometric squares2.017Citations (PDF)
353Intracavity second harmonic generation in the green from a diode-end-pumped Nd3+:Ca3Ga2Ge3O12 laser garnet crystal
Journal of Applied Physics, 2002, 92, 3436-3441
2.09Citations (PDF)
354Simulations and experiments on magneto-optical diffraction by an array of epitaxial Fe(001) microsquares
Applied Physics Letters, 2002, 81, 3206-3208
3.017Citations (PDF)
355Solid state laser source for simultaneous generation of green and red radiation2.95Citations (PDF)
356Codoping Effects on the Laser Gain of Neodymium Activated Lithium Niobate Crystals
Ferroelectrics, 2002, 273, 193-198
0.61Citations (PDF)
357Optimum conditions for ultraviolet-laser generation based on self-frequency sum mixing in Nd^3+-activated borate crystals1.85Citations (PDF)
358Tunable green laser source based on frequency mixing of pump and laser radiation from a Nd:YVO_4 crystal operating at 1342 nm with an intracavity KTP crystal
Applied Optics, 2002, 41, 6394
1.88Citations (PDF)
359Stimulated emission, excited state absorption, and laser modeling of the Nd3+:Ca3Ga2Ge3O12 laser system
Journal of Applied Physics, 2002, 91, 1754-1760
2.021Citations (PDF)
360Determination of magnetic axes distribution in epitaxial Fe (001) micrometric squares by magneto optical technique2.71Citations (PDF)
361Interplay between the vortex lattice and arrays of submicrometric pinning centers0.96Citations (PDF)
362Mixed-state properties of superconducting Nb/Ni superlattices0.914Citations (PDF)
363Fabrication of 2D, 1D and 0D ordered metallic nanostructures
Vacuum, 2002, 67, 693-698
3.73Citations (PDF)
364Diffuse multiself-frequency conversion processes in the blue and green by quasicylindrical ferroelectric domains in Nd3+:Sr0.6Ba0.4(NbO3)2 laser crystal
Applied Physics Letters, 2001, 78, 1961-1963
3.068Citations (PDF)
365A new crystalline host for lasing Ln3+ ions: disordered calcium–lutetium fluoride
Journal of Alloys and Compounds, 2001, 323-324, 376-379
6.03Citations (PDF)
366Concentration effect on the up-conversion luminescence of neodymium activated calcium gallium germanium garnet crystal
Journal of Alloys and Compounds, 2001, 323-324, 312-314
6.05Citations (PDF)
367Self-frequency-sum mixing in Nd doped nonlinear crystals for laser generation in the three fundamental colours
Journal of Alloys and Compounds, 2001, 323-324, 204-209
6.045Citations (PDF)
368Oxygen content influence in the superconducting and electronic properties of Nd1.85Ce0.15Cu1.01Oy ceramics
Journal of Alloys and Compounds, 2001, 323-324, 580-583
6.07Citations (PDF)
369Comparison of optical spectra of Nd3+in NdAl3(BO3)4(NAB), Nd:GdAl3(BO3)4(NGAB) and Nd:Gd0.2Y0.8Al3(BO3)4(NGYAB) crystals2.372Citations (PDF)
370Optical characterization and laser gain modeling of a NdAl3(BO3)4 (NAB) microchip laser crystal
Journal of Applied Physics, 2001, 90, 561-569
2.058Citations (PDF)
371Quantum efficiency of Nd-doped lasers measured by pump-induced crystal heating: application to the Nd3+:Gd2(MoO4)3 crystal1.89Citations (PDF)
372Temperature decrease induced by stimulated emission in the Nd3+ ion-doped YAl3(BO3)4 crystal
Chemical Physics Letters, 2001, 334, 309-313
2.77Citations (PDF)
373Cr 3+ ions location in codoped LiNbO 3:Sc 2 o 3 crystals1.11Citations (PDF)
374Continuous wave ultraviolet laser source based on self-frequency-sum-mixing in Nd3+:YAl3(BO3)4 nonlinear laser crystal
Journal of Applied Physics, 2001, 90, 1070-1072
2.012Citations (PDF)
375Hall effect in Nd1.85Ce0.15CuOy with controlled oxygen content0.93Citations (PDF)
376Spectroscopic and laser properties of Nd3+ in SBN
Journal of Luminescence, 2000, 87-89, 877-879
3.534Citations (PDF)
377Continuous-wave laser properties of 4 F 3/2 ⇾ 4 I 13/2 channel in the Nd 3+ LiNbO 3 :ZnO non-linear crystal1.820Citations (PDF)
378Continuous wave laser radiation at 693 nm from LiNbO 3 :ZnO:Nd 3+ nonlinear laser crystal1.810Citations (PDF)
379Spectroscopy and Continuous Wave Near-Infrared Stimulated Emission of New Yttrium Gallium Garnet {Y3}[Y, Ga](Ga3)O12:Nd3+ (YGaO3:Nd3+)
Optical Review, 2000, 7, 101-111
0.83Citations (PDF)
380Up-conversion luminescence in the Ca3Ga2Ge3O12:Nd3+laser garnet crystal2.313Citations (PDF)
381Spectroscopic and laser gain properties of the Nd3+:β'-Gd2(MoO4)3non-linear crystal2.313Citations (PDF)
382Effects of pump heating on laser and spectroscopic properties of the Nd:[YAl3(BO3)4] self-frequency-doubling laser
Journal of Applied Physics, 2000, 87, 1042-1048
2.038Citations (PDF)
383Infrared continuous-wave laser gain in neodymium aluminum borate: A promising candidate for microchip diode-pumped solid state lasers
Applied Physics Letters, 2000, 76, 2176-2178
3.054Citations (PDF)
384Excited state absorption of pump and laser radiations in NYAB non-linear crystal operating at 1.3µm for visible laser light generation
EPJ Applied Physics, 2000, 10, 29-32
0.85Citations (PDF)
385First observations of stimulated emission and of stimulated Raman scattering in acentric cubic Nd3+:Bi12SiO20crystals
Quantum Electronics, 1999, 29, 6-8
1.113Citations (PDF)
386New nonlinear-laser properties of ferroelectric Nd3+:Ba2NaNb5O15— cw stimulated emission (4F3/2→4I11/2and4F3/2→4I13/2), collinear and diffuse self-frequency doubling and summation
Quantum Electronics, 1999, 29, 95-97
1.125Citations (PDF)
387Optical spectroscopy of in the piezoelectric crystal2.37Citations (PDF)
388Red, blue, and green laser-light generation from the NYAB nonlinear crystal
Optical Engineering, 1999, 38, 1794
0.914Citations (PDF)
389Red, green, and blue laser light from a single Nd:YAl3(BO3)4 crystal based on laser oscillation at 1.3 μm
Applied Physics Letters, 1999, 75, 325-327
3.0127Citations (PDF)
390Continuous wave laser radiation at 669 nm from a self-frequency-doubled laser of YAl3(BO3)4:Nd3+
Applied Physics Letters, 1999, 74, 1788-1790
3.037Citations (PDF)
391Continuous wave laser radiation and self-frequency-doubling in ZnO doped LiNbO3:Nd3+
Optics Communications, 1999, 161, 253-256
2.331Citations (PDF)
392Fluorescence dynamics and laser properties of the Nd3+:Ca3Ga2Ge3O12 crystal
Journal of Luminescence, 1999, 83-84, 477-479
3.54Citations (PDF)
393Nd3+ ion based self frequency doubling solid state lasers
Optical Materials, 1999, 13, 147-157
3.953Citations (PDF)
394Self-frequency-summing NYAB laser for tunable blue generation
Optical Materials, 1999, 13, 311-317
3.934Citations (PDF)
395Bi5.8PO11.2 : Nd3+ — a New Bismuth-Containing Laser Crystal
Physica Status Solidi A, 1999, 175, R9-R10
0.02Citations (PDF)
396Energy transfer with migration. Generalization of the Yokota–Tanimoto model for any kind of multipole interaction
Journal of Chemical Physics, 1999, 111, 1191-1194
2.892Citations (PDF)
397Continuous wave laser radiation at 1314 and 1386 nm and infrared to red self-frequency doubling in nonlinear LaBGeO5:Nd3+ crystal
Applied Physics Letters, 1999, 75, 2722-2724
3.08Citations (PDF)
398Influence of neodymium concentration on the cw laser properties of Nd doped Ca3Ga2Ge3O12 laser garnet crystal
Journal of Applied Physics, 1999, 86, 6627-6633
2.031Citations (PDF)
399New Laser Garnet Crystal with Disordered Structure1.91Citations (PDF)
400New Nd3+:CaLu2F8laser crystal containing lutetium
Quantum Electronics, 1999, 29, 375-377
1.11Citations (PDF)
401Properties of Nd^3+-doped and undoped tetragonal PbWO_4, NaY(WO_4)_2, CaWO_4, and undoped monoclinic ZnWO_4 and CdWO_4 as laser-active and stimulated Raman scattering-active crystals
Applied Optics, 1999, 38, 4533
1.8286Citations (PDF)
402Piezoelectric Sillenite Bi12SiO20:Nd3+. A New Laser and SRS-Active Crystal1.56Citations (PDF)
403Rare earth and transition metal ion centers in LiNbO34.362Citations (PDF)
404Up-conversion luminescence in the Nd3+:YAB self frequency doubling laser crystal
Optical Materials, 1998, 10, 211-217
3.933Citations (PDF)
405Blue-light laser source by sum-frequency mixing in Nd:YAl3(BO3)4
Applied Physics Letters, 1998, 73, 3659-3661
3.064Citations (PDF)
406Continuous-wave laser properties of the self-frequency-doubling YAl_3(BO_3)_4: Nd crystal1.861Citations (PDF)
407Ferroelectric Nd3+:SrxBa1-x(NbO3)2—a new nonlinear laser crystal: cw 1-μm stimulated emission (4F3/2→4I11/2) and diffuse self-frequency doubling
Quantum Electronics, 1998, 28, 1031-1033
1.17Citations (PDF)
408Quantum efficiency of the self-frequency-doubling laser material2.320Citations (PDF)
409Continuous wave laser radiation at 524 nm from a self-frequency-doubled laser of LaBGeO5:Nd3+
Applied Physics Letters, 1998, 72, 531-533
3.060Citations (PDF)
410Optical bands and energy levels of ion in the nonlinear laser crystal2.3101Citations (PDF)
411CW end-pumped Nd3+:LaBGeO5 mini laser for self-frequency-doubling
Journal of Luminescence, 1997, 72-74, 816-818
3.56Citations (PDF)
412Tuning Phonon Energies in Lanthanide‐doped Potassium Lead Halide Nanocrystals for Enhanced Nonlinearity and Upconversion1.42Citations (PDF)
413Rapid in situ microwave-assisted fabrication of ultrabright near-infrared probe for low-dose in vivo inflammatory imaging11.42Citations (PDF)
414Accurate and Fast Thermal Sensing via Phase-Responsive Nanothermometers and Neural Networks
Nano Letters, 0, 25, 16538-16546
8.72Citations (PDF)
415Near‐Infrared Lifetime Nanothermometry Detects Microwave‐Induced Brain Heating7.01Citations (PDF)
416Ag2S nanoparticles enable early detection of inflammation by transient thermometry3.30Citations (PDF)
417Upconversion particle-based optical tweezers for sensing applications
Nature Protocols, 0, 21, 1985-2015
14.42Citations (PDF)
418From Bug to Feature: Harnessing Cross‐Sensitivity for Multiparametric Luminescence Sensing17.00Citations (PDF)
419Light on bio, energy and beyond: SHIFT must go on Preface for Special Issue of SHIFT 2025 Conference “Spectral sHapIng For biomedical and energy applicaTions” held in Tenerife, Canary Islands (Spain) on October 13–17, 2025
Optical Materials, 0, 176, 117992
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420NIR-emitting optical materials for cardiovascular implants: Toward luminescent diagnostic stents
Optical Materials, 0, 176, 118133
3.90Citations (PDF)
421Sensing with (One or Many) Upconverting Nanoparticles17.00Citations (PDF)