Type II supernovae represent the most common stellar explosions in the Universe, for which the final stage evolution of their hydrogen-rich massive progenitors towards core-collapse explosion are elusive. The recent explosion of SN 2023ixf in a very nearby galaxy, Messier 101, provides a rare opportunity to explore this longstanding issue. With the timely high-cadence flash spectra taken within 1-5 days after the explosion, we can put stringent constraints on the properties of the surrounding circumstellar material around this supernova. Based on the rapid fading of the narrow emission lines and luminosity/profile of $\rm H\alpha$ emission at very early times, we estimate that the progenitor of SN 2023ixf lost material at a mass-loss rate $...
As one of the closest supernovae (SNe) in the last decade, SN 2023ixf is an unprecedented target to ...
Narrow transient emission lines (flash-ionization features) in early supernova (SN) spectra trace th...
Supernovae (SNe) embedded in dense circumstellar material (CSM) may show prominent emission lines in...
We present early-phase panchromatic photometric and spectroscopic coverage spanning far-ultraviolet ...
With the advent of new wide-field, high-cadence optical transient surveys, our understanding of the ...
We present the discovery of Type II supernova (SN) 2023ixf in M101, among the closest core-collapse ...
Narrow transient emission lines (flash-ionization features) in early supernova (SN) spectra trace th...
With the advent of new wide-field, high-cadence optical transient surveys, our understanding of the ...
I present the effervescent zone model to account for the compact dense circumstellar material (CSM) ...
International audienceNarrow transient emission lines (flash-ionization features) in early supernova...
International audienceNarrow transient emission lines (flash-ionization features) in early supernova...
We present the densely sampled early light curve of the Type II supernova (SN) 2023ixf, first observ...
SNe II show growing evidence of interaction with CSM surrounding their progenitor stars as a consequ...
Narrow transient emission lines (flash-ionization features) in early supernova (SN) spectra trace th...
With the advent of new wide-field, high-cadence optical transient surveys, our understanding of the ...
As one of the closest supernovae (SNe) in the last decade, SN 2023ixf is an unprecedented target to ...
Narrow transient emission lines (flash-ionization features) in early supernova (SN) spectra trace th...
Supernovae (SNe) embedded in dense circumstellar material (CSM) may show prominent emission lines in...
We present early-phase panchromatic photometric and spectroscopic coverage spanning far-ultraviolet ...
With the advent of new wide-field, high-cadence optical transient surveys, our understanding of the ...
We present the discovery of Type II supernova (SN) 2023ixf in M101, among the closest core-collapse ...
Narrow transient emission lines (flash-ionization features) in early supernova (SN) spectra trace th...
With the advent of new wide-field, high-cadence optical transient surveys, our understanding of the ...
I present the effervescent zone model to account for the compact dense circumstellar material (CSM) ...
International audienceNarrow transient emission lines (flash-ionization features) in early supernova...
International audienceNarrow transient emission lines (flash-ionization features) in early supernova...
We present the densely sampled early light curve of the Type II supernova (SN) 2023ixf, first observ...
SNe II show growing evidence of interaction with CSM surrounding their progenitor stars as a consequ...
Narrow transient emission lines (flash-ionization features) in early supernova (SN) spectra trace th...
With the advent of new wide-field, high-cadence optical transient surveys, our understanding of the ...
As one of the closest supernovae (SNe) in the last decade, SN 2023ixf is an unprecedented target to ...
Narrow transient emission lines (flash-ionization features) in early supernova (SN) spectra trace th...
Supernovae (SNe) embedded in dense circumstellar material (CSM) may show prominent emission lines in...