Contains fulltext : 204340.pdf (publisher's version ) (Open Access) Contains fulltext : 204340-1.pdf (preprint version ) (Open Access)We investigate ZTF18aalrxas, a double-peaked Type IIb core-collapse supernova (SN) discovered during science validation of the Zwicky Transient Facility. ZTF18aalrxas was discovered while the optical emission was still rising toward the initial cooling peak (0.7 mag over 2 days). Our observations consist of multi-band (ultraviolet and optical) light curves (LCs), and optical spectra spanning from ≈0.7 to ≈180 days past the explosion. We use a Monte-Carlo based non-local thermodynamic equilibrium model that simultaneously reproduces both th...
International audienceHigh-cadence transient surveys are able to capture supernovae closer to their ...
International audienceHigh-cadence transient surveys are able to capture supernovae closer to their ...
The fate of stars in the zero-age main-sequence (ZAMS) range ≈8-12 M ⊙ is unclear. They could evolve...
We investigate ZTF18aalrxas, a double-peaked Type IIb core-collapse supernova (SN) discovered during...
We investigate ZTF18aalrxas, a double-peaked Type IIb core-collapse supernova (SN) discovered during...
International audienceWe present the discovery and extensive follow-up observations of SN 2020jfo, a...
International audienceWe present the discovery and extensive follow-up observations of SN 2020jfo, a...
We present the discovery and extensive follow-up observations of SN 2020jfo, a Type IIP supernova (S...
We present detailed observations of ZTF18abukavn (SN2018gep), discovered in high-cadence data from t...
International audienceContext. We present our observations and analysis of SN 2020cxd, a low-luminos...
We present detailed observations of ZTF18abukavn (SN2018gep), discovered in high-cadence data from t...
International audienceContext. We present our observations and analysis of SN 2020cxd, a low-luminos...
Context. We present our observations and analysis of SN 2020cxd, a low-luminosity (LL), long-lived T...
International audienceWe present observations of SN 2022joj, a peculiar Type Ia supernova (SN Ia) di...
International audienceWe present observations of SN 2022joj, a peculiar Type Ia supernova (SN Ia) di...
International audienceHigh-cadence transient surveys are able to capture supernovae closer to their ...
International audienceHigh-cadence transient surveys are able to capture supernovae closer to their ...
The fate of stars in the zero-age main-sequence (ZAMS) range ≈8-12 M ⊙ is unclear. They could evolve...
We investigate ZTF18aalrxas, a double-peaked Type IIb core-collapse supernova (SN) discovered during...
We investigate ZTF18aalrxas, a double-peaked Type IIb core-collapse supernova (SN) discovered during...
International audienceWe present the discovery and extensive follow-up observations of SN 2020jfo, a...
International audienceWe present the discovery and extensive follow-up observations of SN 2020jfo, a...
We present the discovery and extensive follow-up observations of SN 2020jfo, a Type IIP supernova (S...
We present detailed observations of ZTF18abukavn (SN2018gep), discovered in high-cadence data from t...
International audienceContext. We present our observations and analysis of SN 2020cxd, a low-luminos...
We present detailed observations of ZTF18abukavn (SN2018gep), discovered in high-cadence data from t...
International audienceContext. We present our observations and analysis of SN 2020cxd, a low-luminos...
Context. We present our observations and analysis of SN 2020cxd, a low-luminosity (LL), long-lived T...
International audienceWe present observations of SN 2022joj, a peculiar Type Ia supernova (SN Ia) di...
International audienceWe present observations of SN 2022joj, a peculiar Type Ia supernova (SN Ia) di...
International audienceHigh-cadence transient surveys are able to capture supernovae closer to their ...
International audienceHigh-cadence transient surveys are able to capture supernovae closer to their ...
The fate of stars in the zero-age main-sequence (ZAMS) range ≈8-12 M ⊙ is unclear. They could evolve...