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125 peer-reviewed articles • 13,330 peer-reviewed citations • Sorted by year • Download PDF (PDF by citations)
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1Eruptive mass loss less than a year before the explosion of superluminous supernovae4.07Citations (PDF)
2Sample of hydrogen-rich superluminous supernovae from the Zwicky Transient Facility4.018Citations (PDF)
3Decision tree ensembles for automatic spectroscopic classification of tidal disruption events3.31Citations (PDF)
4Accurate photometric calibration by fitting the system transmission4.04Citations (PDF)
5Extremely stripped supernova reveals a silicon and sulfur formation site
Nature, 2025, 644, 634-639
31.321Citations (PDF)
61100 days in the life of the supernova 2018ibb4.049Citations (PDF)
7A 12.4-day periodicity in a close binary system after a supernova
Nature, 2024, 625, 253-258
31.312Citations (PDF)
8A 12.4-day periodicity in a close binary system after a supernova
Nature, 2024, 625, 253-258
31.331Citations (PDF)
9The dense and non-homogeneous circumstellar medium revealed in radio wavelengths around the Type Ib SN 2019oys4.011Citations (PDF)
10Spectroscopic observations of progenitor activity 100 days before a Type Ibn supernova4.023Citations (PDF)
11The complex circumstellar environment of supernova 2023ixf
Nature, 2024, 627, 759-762
31.390Citations (PDF)
12The Origin and Evolution of the Normal Type Ia SN 2018aoz with Infant-phase Reddening and Excess Emission
Astrophysical Journal, 2023, 946, 7
3.619Citations (PDF)
13Polarimetry of hydrogen-poor superluminous supernovae4.025Citations (PDF)
14A radio-detected type Ia supernova with helium-rich circumstellar material
Nature, 2023, 617, 477-482
31.342Citations (PDF)
15A Search for Extragalactic Fast Blue Optical Transients in ZTF and the Rate of AT2018cow-like Transients
Astrophysical Journal, 2023, 949, 120
3.6108Citations (PDF)
16A superluminous supernova lightened by collisions with pulsational pair-instability shells
Nature Astronomy, 2023, 7, 779-789
8.832Citations (PDF)
17A Systematic Study of Ia-CSM Supernovae from the ZTF Bright Transient Survey
Astrophysical Journal, 2023, 948, 52
3.643Citations (PDF)
18Minutes-duration optical flares with supernova luminosities
Nature, 2023, 623, 927-931
31.330Citations (PDF)
19A WC/WO star exploding within an expanding carbon–oxygen–neon nebula
Nature, 2022, 601, 201-204
31.3114Citations (PDF)
20Infant-phase reddening by surface Fe-peak elements in a normal type Ia supernova
Nature Astronomy, 2022, 6, 568-576
8.833Citations (PDF)
21SN 2019zrk, a bright SN 2009ip analog with a precursor4.017Citations (PDF)
22RINGO3 polarimetry of very young ZTF supernovae3.316Citations (PDF)
23A tidal disruption event coincident with a high-energy neutrino
Nature Astronomy, 2021, 5, 510-518
8.8264Citations (PDF)
24Discovery and confirmation of the shortest gamma-ray burst from a collapsar
Nature Astronomy, 2021, 5, 917-927
8.8143Citations (PDF)
25AT 2018lqh and the Nature of the Emerging Population of Day-scale Duration Optical Transients
Astrophysical Journal, 2021, 922, 247
3.614Citations (PDF)
26PTF11rka: an interacting supernova at the crossroads of stripped-envelope and H-poor superluminous stellar core collapses3.38Citations (PDF)
27SN 2017ivv: two years of evolution of a transitional Type II supernova3.323Citations (PDF)
28A catalogue of over 10 million variable source candidates in ZTF Data Release 13.320Citations (PDF)
29PS15cey and PS17cke: prospective candidates from the Pan-STARRS Search for kilonovae3.321Citations (PDF)
30From core collapse to superluminous: the rates of massive stellar explosions from the Palomar Transient Factory3.361Citations (PDF)
31The Zwicky Transient Facility Census of the Local Universe. I. Systematic Search for Calcium-rich Gap Transients Reveals Three Related Spectroscopic Subclasses
Astrophysical Journal, 2020, 905, 58
3.6108Citations (PDF)
32Investigating the properties of stripped-envelope supernovae; what are the implications for their progenitors?3.3133Citations (PDF)
33A hybrid envelope-stripping mechanism for massive stars from supernova nebular spectroscopy
Nature Astronomy, 2019, 3, 434-439
8.853Citations (PDF)
34Signatures of circumstellar interaction in the Type IIL supernova ASASSN-15oz3.339Citations (PDF)
35SNe 2013K and 2013am: observed and physical properties of two slow, normal Type IIP events3.332Citations (PDF)
36Constraints on the ejecta of the GW170817 neutron star merger from its electromagnetic emission3.3161Citations (PDF)
37A hot and fast ultra-stripped supernova that likely formed a compact neutron star binary
Science, 2018, 362, 201-206
26.5103Citations (PDF)
38The delay of shock breakout due to circumstellar material evident in most type II supernovae
Nature Astronomy, 2018, 2, 808-818
8.8158Citations (PDF)
39A UV resonance line echo from a shell around a hydrogen-poor superluminous supernova
Nature Astronomy, 2018, 2, 887-895
8.858Citations (PDF)
40Supernovae 2016bdu and 2005gl, and their link with SN 2009ip-like transients: another piece of the puzzle3.370Citations (PDF)
41On the nature of hydrogen-rich superluminous supernovae3.388Citations (PDF)
42Confined dense circumstellar material surrounding a regular type II supernova
Nature Physics, 2017, 13, 510-517
10.8350Citations (PDF)
43Early observations of the nearby Type Ia supernova SN 2015F3.344Citations (PDF)
44Hydrogen-rich supernovae beyond the neutrino-driven core-collapse paradigm
Nature Astronomy, 2017, 1, 713-720
8.860Citations (PDF)
45Exploring the Efficacy and Limitations of Shock-cooling Models: New Analysis of Type II Supernovae Observed by the Kepler Mission
Astrophysical Journal, 2017, 848, 8
3.628Citations (PDF)
46A kilonova as the electromagnetic counterpart to a gravitational-wave source
Nature, 2017, 551, 75-79
31.3805Citations (PDF)
47Energetic eruptions leading to a peculiar hydrogen-rich explosion of a massive star
Nature, 2017, 551, 210-213
31.3138Citations (PDF)
48LSQ14efd: observations of the cooling of a shock break-out event in a type Ic Supernova3.314Citations (PDF)
49ON THE EARLY-TIME EXCESS EMISSION IN HYDROGEN-POOR SUPERLUMINOUS SUPERNOVAE
Astrophysical Journal, 2017, 835, 58
3.669Citations (PDF)
50Optical photometry and spectroscopy of the low-luminosity, broad-lined Ic supernova iPTF15dld3.36Citations (PDF)
51The late-time light curve of the Type Ia supernova SN 2011fe3.349Citations (PDF)
52Type Ia supernovae with and without blueshifted narrow Na i D lines – how different is their structure?3.37Citations (PDF)
53Complexity in the light curves and spectra of slow-evolving superluminous supernovae3.392Citations (PDF)
54Pan-STARRS and PESSTO search for an optical counterpart to the LIGO gravitational-wave source GW1509143.351Citations (PDF)
55LOCALIZATION AND BROADBAND FOLLOW-UP OF THE GRAVITATIONAL-WAVE TRANSIENT GW1509147.2223Citations (PDF)
56DES14X3taz: A TYPE I SUPERLUMINOUS SUPERNOVA SHOWING A LUMINOUS, RAPIDLY COOLING INITIAL PRE-PEAK BUMP7.294Citations (PDF)
57The bolometric light curves and physical parameters of stripped-envelope supernovae3.3157Citations (PDF)
58The superluminous transient ASASSN-15lh as a tidal disruption event from a Kerr black hole
Nature Astronomy, 2016, 1,
8.8191Citations (PDF)
59SN2002es-LIKE SUPERNOVAE FROM DIFFERENT VIEWING ANGLES
Astrophysical Journal, 2016, 832, 86
3.627Citations (PDF)
60SN 2009ip at late times – an interacting transient at +2 years3.353Citations (PDF)
61Supersolar Ni/Fe production in the Type IIP SN 2012ec3.370Citations (PDF)
62SN 2012ec: mass of the progenitor from PESSTO follow-up of the photospheric phase3.349Citations (PDF)
63On the diversity of superluminous supernovae: ejected mass as the dominant factor3.3183Citations (PDF)
64Measuring nickel masses in Type Ia supernovae using cobalt emission in nebular phase spectra3.387Citations (PDF)
65Massive stars exploding in a He-rich circumstellar medium – VI. Observations of two distant Type Ibn supernova candidates discovered by La Silla-QUEST3.341Citations (PDF)
66A strong ultraviolet pulse from a newborn type Ia supernova
Nature, 2015, 521, 328-331
31.3178Citations (PDF)
67Spectropolarimetry of SN 2011dh in M51: geometric insights on a Type IIb supernova progenitor and explosion3.328Citations (PDF)
68PTF11iqb: cool supergiant mass-loss that bridges the gap between Type IIn and normal supernovae3.3156Citations (PDF)
69The rising light curves of Type Ia supernovae3.3129Citations (PDF)
70A double white dwarf with a paradoxical origin?3.323Citations (PDF)
71PESSTO monitoring of SN 2012hn: further heterogeneity among faint Type I supernovae★3.365Citations (PDF)
72iPTF13beo: the double-peaked light curve of a Type Ibn supernova discovered shortly after explosion3.337Citations (PDF)
73On the progenitor of the Type IIP SN 2013ej in M743.264Citations (PDF)
74Hubble Space Telescope spectra of the Type Ia supernova SN 2011fe: a tail of low-density, high-velocity material with Z < Z⊙3.3157Citations (PDF)
75Superluminous supernovae from PESSTO3.3142Citations (PDF)
76The supernova CSS121015:004244+132827: a clue for understanding superluminous supernovae3.377Citations (PDF)
77Exploring the spectral diversity of low-redshift Type Ia supernovae using the Palomar Transient Factory3.394Citations (PDF)
78Optical follow-up observations of PTF10qts, a luminous broad-lined Type Ic supernova found by the Palomar Transient Factory3.325Citations (PDF)
79The host galaxies of Type Ia supernovae discovered by the Palomar Transient Factory3.3117Citations (PDF)
80A CONTINUUM OF H- TO He-RICH TIDAL DISRUPTION CANDIDATES WITH A PREFERENCE FOR E+A GALAXIES
Astrophysical Journal, 2014, 793, 38
3.6433Citations (PDF)
81A Wolf–Rayet-like progenitor of SN 2013cu from spectral observations of a stellar wind
Nature, 2014, 509, 471-474
31.3333Citations (PDF)
82An outburst from a massive star 40 days before a supernova explosion
Nature, 2013, 494, 65-67
31.3215Citations (PDF)
83The very energetic, broad-lined Type Ic supernova 2010ah (PTF10bzf) in the context of GRB/SNe3.355Citations (PDF)
84The UV/optical spectra of the Type Ia supernova SN 2010jn: a bright supernova with outer layers rich in iron-group elements3.354Citations (PDF)
85The first month of evolution of the slow-rising Type IIP SN 2013ej in M743.2181Citations (PDF)
86SN2012ca: a stripped envelope core-collapse SN interacting with dense circumstellar medium3.226Citations (PDF)
87Superluminous supernovae at redshifts of 2.05 and 3.90
Nature, 2012, 491, 228-231
31.3161Citations (PDF)
88Near-infrared observations of Type Ia supernovae: the best known standard candle for cosmology3.374Citations (PDF)
89Studying the diversity of Type Ia supernovae in the ultraviolet: comparing models with observations3.392Citations (PDF)
90SN 2010jp (PTF10aaxi): a jet in a Type II supernova3.360Citations (PDF)
91Asteroid rotation periods from the Palomar Transient Factory survey3.335Citations (PDF)
92Supernovae in the Subaru Deep Field: the rate and delay-time distribution of Type Ia supernovae out to redshift 23.3112Citations (PDF)
93PTF10ops - a subluminous, normal-width light curve Type Ia supernova in the middle of nowhere3.351Citations (PDF)
94SN 2009md: another faint supernova from a low-mass progenitor3.3110Citations (PDF)
95Hydrogen-poor superluminous stellar explosions
Nature, 2011, 474, 487-489
31.3503Citations (PDF)
96Supernova SN 2011fe from an exploding carbon–oxygen white dwarf star
Nature, 2011, 480, 344-347
31.3463Citations (PDF)
97A faint type of supernova from a white dwarf with a helium-rich companion
Nature, 2010, 465, 322-325
31.3314Citations (PDF)
98Proper Motions with Subaru I. Methods and a First Sample in the Subaru Deep Field1.84Citations (PDF)
99A massive hypergiant star as the progenitor of the supernova SN 2005gl
Nature, 2009, 458, 865-867
31.3298Citations (PDF)
100Type IIn supernovae at redshift z ≈ 2 from archival data
Nature, 2009, 460, 237-239
31.338Citations (PDF)
101Supernova 2007bi as a pair-instability explosion
Nature, 2009, 462, 624-627
31.3432Citations (PDF)
102A single sub-kilometre Kuiper belt object from a stellar occultation in archival data
Nature, 2009, 462, 895-897
31.389Citations (PDF)
103The broad-lined Type Ic supernova 2003jd★3.3249Citations (PDF)
104The type IIb SN 2008ax: the nature of the progenitor3.2130Citations (PDF)
105An extremely luminous X-ray outburst at the birth of a supernova
Nature, 2008, 453, 469-474
31.3467Citations (PDF)
106Massive stars exploding in a He-rich circumstellar medium - I. Type Ibn (SN 2006jc-like) events3.3188Citations (PDF)
107The Type IIb SN 2008ax: spectral and light curve evolution3.3128Citations (PDF)
108An unusually brilliant transient in the galaxy M85
Nature, 2007, 447, 458-460
31.3144Citations (PDF)
109SN 2004A: another Type II-P supernova with a red supergiant progenitor3.375Citations (PDF)
110A photometric redshift of z = 6.39 ± 0.12 for GRB 050904
Nature, 2006, 440, 181-183
31.3117Citations (PDF)
111A non-spherical core in the explosion of supernova SN 2004dj
Nature, 2006, 440, 505-507
31.3167Citations (PDF)
112Relativistic ejecta from X-ray flash XRF 060218 and the rate of cosmic explosions
Nature, 2006, 442, 1014-1017
31.3473Citations (PDF)
113A novel explosive process is required for the γ-ray burst GRB 060614
Nature, 2006, 444, 1053-1055
31.3358Citations (PDF)
114The afterglow of GRB 050709 and the nature of the short-hard γ-ray bursts
Nature, 2005, 437, 845-850
31.3455Citations (PDF)
115The afterglow and elliptical host galaxy of the short γ-ray burst GRB 050724
Nature, 2005, 438, 988-990
31.3337Citations (PDF)
116The type Ia supernova rate in z <= 1 galaxy clusters: implications for progenitors and the source of cluster iron3.357Citations (PDF)
117The redshift distribution of type Ia supernovae: constraints on progenitors and cosmic star formation history3.372Citations (PDF)
118The sub-energetic γ-ray burst GRB 031203 as a cosmic analogue to the nearby GRB 980425
Nature, 2004, 430, 648-650
31.3181Citations (PDF)
119Early optical emission from the γ-ray burst of 4 October 2002
Nature, 2003, 422, 284-286
31.3106Citations (PDF)
120Supernovae in deep Hubble Space Telescope galaxy cluster fields: cluster rates and field counts3.377Citations (PDF)
121Supernova 2002ap: the first month3.398Citations (PDF)
122An axisymmetric shock breakout indicated by prompt polarized emission from the type II supernova 2024ggi8.27Citations (PDF)
123The hydrogen-free circumstellar interaction in the Type Ib supernova 2021efd: A clue to the mechanism of the helium-layer stripping4.02Citations (PDF)
124Massive stars exploding in a He-rich circumstellar medium4.03Citations (PDF)
125Eruptive mass loss less than a year before the explosion of superluminous supernovae4.01Citations (PDF)