Context. The transient iPTF15dtg is a type-Ic supernova (SN) showing a broad light curve around maximum light, consistent with massive ejecta if we assume a radioactive-powering scenario. Aims. We aim to study the late-time light curve of iPTF15dtg, which turned out to be extraordinarily luminous for a stripped-envelope (SE) SN, and investigate possible powering mechanisms. Methods. We compare the observed light curves to those of other SE SNe and also to models for the 56Co decay. We analyze and compare the spectra to nebular spectra of other SE SNe. We build a bolometric light curve and fit it with different models, including powering by radioactivity, magnetar powering, and a combination of the two. Results. Between 150 and 750 d post-ex...
We present the light curves of the hydrogen-poor super-luminous supernovae (SLSNe I) PTF 12dam and i...
Wide-field surveys are discovering a growing number of rare transients whose physical origin is not ...
We present detailed observations of ZTF18abukavn (SN2018gep), discovered in high-cadence data from t...
Context. The transient iPTF15dtg is a type-Ic supernova (SN) showing a broad light curve around maxi...
iPTF15dtg is a supernova (SN) Type Ic (lacking hydrogen and helium in its spectrum) with a light cur...
We report extensive observational data for five of the lowest redshift Super-Luminous Type Ic Supern...
Context. Type Ic supernovae (SNe Ic) arise from the core-collapse of H- (and He-) poor stars, which ...
International audienceMagnetar power is believed to be at the origin of numerous super-luminous supe...
We report extensive observational data for five of the lowest redshift Super-Luminous Type Ic Supern...
It is well known that ordinary supernovae (SNe) are powered by 56Ni cascade decay. Broad-lined type ...
Context. It has been suggested that some supernovae (SNe) may be powered by a magnetar formed at the...
5 pages, 4 figures,Much uncertainty surrounds the origin of superluminous supernovae (SNe). Motivate...
Context. Type Ic supernovae (SNe Ic) arise from the core-collapse of H- (and He-) poor stars, which ...
We present the light curves of the hydrogen-poor superluminous supernovae (SLSNe I) PTF 12dam and iP...
Magnetar power is believed to be at the origin of numerous super-luminous supernovae (SNe) of Type I...
We present the light curves of the hydrogen-poor super-luminous supernovae (SLSNe I) PTF 12dam and i...
Wide-field surveys are discovering a growing number of rare transients whose physical origin is not ...
We present detailed observations of ZTF18abukavn (SN2018gep), discovered in high-cadence data from t...
Context. The transient iPTF15dtg is a type-Ic supernova (SN) showing a broad light curve around maxi...
iPTF15dtg is a supernova (SN) Type Ic (lacking hydrogen and helium in its spectrum) with a light cur...
We report extensive observational data for five of the lowest redshift Super-Luminous Type Ic Supern...
Context. Type Ic supernovae (SNe Ic) arise from the core-collapse of H- (and He-) poor stars, which ...
International audienceMagnetar power is believed to be at the origin of numerous super-luminous supe...
We report extensive observational data for five of the lowest redshift Super-Luminous Type Ic Supern...
It is well known that ordinary supernovae (SNe) are powered by 56Ni cascade decay. Broad-lined type ...
Context. It has been suggested that some supernovae (SNe) may be powered by a magnetar formed at the...
5 pages, 4 figures,Much uncertainty surrounds the origin of superluminous supernovae (SNe). Motivate...
Context. Type Ic supernovae (SNe Ic) arise from the core-collapse of H- (and He-) poor stars, which ...
We present the light curves of the hydrogen-poor superluminous supernovae (SLSNe I) PTF 12dam and iP...
Magnetar power is believed to be at the origin of numerous super-luminous supernovae (SNe) of Type I...
We present the light curves of the hydrogen-poor super-luminous supernovae (SLSNe I) PTF 12dam and i...
Wide-field surveys are discovering a growing number of rare transients whose physical origin is not ...
We present detailed observations of ZTF18abukavn (SN2018gep), discovered in high-cadence data from t...