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Hydrodynamic Modelling of Early Peaks in Type Ibc Supernovae with Circumstellar Interaction

Recent high-cadence transient surveys have uncovered a subclass of Type Ibc supernovae (SNe) that exhibit an early, blue peak lasting a few days before the main, radioactively powered peak. Since… Click to show full abstract

Recent high-cadence transient surveys have uncovered a subclass of Type Ibc supernovae (SNe) that exhibit an early, blue peak lasting a few days before the main, radioactively powered peak. Since progenitors of Type Ibc SNe are typically compact and lack an extended envelope, this early peak is commonly attributed to the presence of circumstellar matter (CSM) surrounding the progenitor star. As such, these SNe provide a unique opportunity to constrain the pre-explosion activity of Type Ibc SN progenitors. We present the first systematic study of this Type Ibc SN population that incorporates hydrodynamic modelling. We simulated Type Ibc SNe exploding within CSM using the multi-group radiation-hydrodynamics code STELLA, exploring a range of SN and CSM properties. By comparing the theoretical multi-band light curves to a sample of seven Type Ibc SNe with early peaks, we constrained their CSM properties. Assuming a wind-like density distribution of CSM, we found CSM masses of 10−2 − 10−1 M⊙ and CSM radii of (1 − 5) × 103 R⊙. While the masses were roughly consistent with a previous estimate obtained using an analytical model, the radii were significantly different, likely due to a simplified assumption on blackbody temperature used in analytical models. We infer that the progenitors could have created CSM via late-time binary mass transfer or pulsational pair instability. We also estimate that, in the planned ULTRASAT high-cadence survey, ∼30 early peaks similar to those in this paper from Type Ibc SNe will be observed.

Keywords: ibc; sne; csm; early peaks; type ibc

Journal Title: Monthly Notices of the Royal Astronomical Society
Year Published: 2025

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