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Massive stars (>8 $M_{\odot}$) often undergo intense mass loss through winds or eruptive events in the final stages of their evolution, leading to the formation of a dense circumstellar medium (CSM). This material, expelled months to years…

高能天体物理现象 · 物理学 2025-10-15 Silvia Gagliardini , Simone Dall'Osso , Dafne Guetta , Angela Zegarelli , Silvia Celli , Antonio Capone , Irene Di Palma

Dense, compact circumstellar media (CSM) are required to power strongly interacting supernovae, yet their physical origin remains uncertain. We present a systematic study of binary stellar evolution models computed with MESA, demonstrating…

高能天体物理现象 · 物理学 2026-05-13 Sung-Han Tsai , Ke-Jung Chen , Keiichi Maeda , Po-Sheng Ou , Friedrich K. Röpke

Numerous core-collapse supernovae (CCSNe) exhibit signatures of interaction with circumstellar material (CSM). Bright radio emission years after the SN is one such indication of dense CSM at large distances from the star, which may be…

高能天体物理现象 · 物理学 2025-10-13 Samantha C. Wu , Daichi Tsuna

We propose a model for dust formation in Type II supernovae (SNe) interacting with confined circumstellar material (CSM), motivated by recent time-domain surveys that have revealed a substantial fraction of SN progenitors to be surrounded…

太阳与恒星天体物理 · 物理学 2025-09-05 Yuki Takei , Kunihito Ioka , Masaru Shibata

Massive stars can shed material via steady, line-driven winds, eruptive outflows, or mass-transfer onto a binary companion. In the case of single stars, the mass is deposited by the stellar wind into the nearby environment. After the…

高能天体物理现象 · 物理学 2021-06-23 Taylor Jacovich , Daniel Patnaude , Pat Slane , Carles Badenes , Shiu-Hang Lee , Shigehiro Nagataki , Dan Milisavljevic

Supernovae (SNe) with strong interactions with circumstellar material (CSM) are promising candidate sources of high-energy neutrinos and gamma rays, and have been suggested as an important contributor to Galactic cosmic rays beyond 1 PeV.…

高能天体物理现象 · 物理学 2019-03-27 Kohta Murase , Anna Franckowiak , Keiichi Maeda , Raffaella Margutti , John F. Beacom

We investigate SN 2014C using three-dimensional hydrodynamic modeling, focusing on its early interaction with dense circumstellar medium (CSM). Our objective is to uncover the pre-supernova (SN) CSM structure and constrain the progenitor…

高能天体物理现象 · 物理学 2024-10-24 S. Orlando , E. Greco , R. Hirai , T. Matsuoka , M. Miceli , S. Nagataki , M. Ono , K. -J. Chen , D. Milisavljevic , D. Patnaude , F. Bocchino , N. Elias-Rosa

Massive ($\geq$8 $M_\odot$) stars perish via one of two fates: core-collapse supernovae (CCSNe), which release synthesized heavy elements, or failed supernovae, thereby forming black holes. In the conventional Galactic chemical evolution…

星系天体物理 · 物理学 2022-11-30 Takuji Tsujimoto

Massive stars shape their surroundings with mass loss from winds during their lifetimes. Fast ejecta from supernovae, from these massive stars, shocks this circumstellar medium. Emission generated by this interaction provides a window into…

In a substantial number of core-collapse supernovae, early-time interaction indicates a dense circumstellar medium (CSM) that may be produced by outbursts from the progenitor star. Wave-driven mass loss is a possible mechanism to produce…

高能天体物理现象 · 物理学 2022-05-12 Samantha Wu , Jim Fuller

We present our results on the {\gamma}-ray emission from interaction-powered supernovae (SNe), a recently discovered SN type that is suggested to be surrounded by a circumstellar medium (CSM) with densities 10^7-10^12~ cm^-3. Such high…

高能天体物理现象 · 物理学 2016-07-21 Dimitrios Kantzas , Maria Petropoulou , Apostolos Mastichiadis

We evolve stellar models with zero-age main sequence (ZAMS) mass of $M_{\rm ZAMS} \gtrsim 18 M_\odot$ under the assumption that they experience an enhanced mass-loss rate when crossing the instability strip at high luminosities and conclude…

太阳与恒星天体物理 · 物理学 2020-04-29 Roni Anna Gofman , Naomi Gluck , Noam Soker

A significant fraction of supernovae show signatures of dense circumstellar material (CSM). While multiple scenarios for creating a dense CSM exist, mass eruption due to injection of energy at the base of the outer envelope is a likely…

太阳与恒星天体物理 · 物理学 2022-05-25 Takatoshi Ko , Daichi Tsuna , Yuki Takei , Toshikazu Shigeyama

Recent observations of a large fraction of Type II supernovae show traces of dense circumstellar medium (CSM) very close to the progenitor star. If this CSM is created by eruptive mass loss several months before core-collapse, the eruption…

高能天体物理现象 · 物理学 2023-03-29 Daichi Tsuna , Yuki Takei , Toshikazu Shigeyama

Stripped-envelope supernovae (SNe) are H-poor transients produced at the end of the life of massive stars that previously lost their H-rich envelope. Their progenitors are thought to be donor stars in mass-transferring binary systems, which…

太阳与恒星天体物理 · 物理学 2025-04-25 Andrea Ercolino , Harim Jin , Norbert Langer , Luc Dessart

Type IIP supernova progenitors are often surrounded by dense circumstellar media that may result from mass-loss enhancement of the progenitors shortly before their explosions. Previous light-curve studies suggest that the mass-loss rates…

高能天体物理现象 · 物理学 2017-06-21 Takashi J. Moriya , Sung-Chul Yoon , Götz Gräfener , Sergei I. Blinnikov

High-cadence high-resolution spectroscopic observations of infant Type II supernovae (SNe) represent an exquisite probe of the atmospheres and winds of exploding red-supergiant (RSG) stars. Using radiation hydrodynamics and radiative…

高能天体物理现象 · 物理学 2025-02-12 Luc Dessart

The relationship between the mass-loss history and final evolutionary stage of massive stars and the properties of the observable supernova (SN) is still under debate. This is especially true for stripped-envelope (Type Ib/c) SNe, where the…

高能天体物理现象 · 物理学 2025-05-14 A. P. Nagy , B. H. Pál , T. Szalai

Massive stars undergo fundamental-mode and first-overtone radial pulsations with periods of 100-1000 days as Red Supergiants (RSGs). At large amplitudes, these pulsations substantially modify the outer envelope's density structure…

太阳与恒星天体物理 · 物理学 2020-03-11 Jared A. Goldberg , Lars Bildsten , Bill Paxton