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Massive stars less massive than ~30 Msol evolve into a red supergiant after the main sequence. Given a standard IMF, this means about 80% of all single massive stars will experience this phase. RSGs are dominated by convection, with a…

Solar and Stellar Astrophysics · Physics 2025-07-23 Sylvia Ekström , Cyril Georgy

Mass-loss rates are one of the most relevant parameters determining the evolution of massive stars. In particular, the rates at which the star loses mass during the red-supergiant (RSG) phase is the least constrained by the observations or…

Solar and Stellar Astrophysics · Physics 2015-06-12 Cyril Georgy , Sylvia Ekström , Hideyuki Saio , Georges Meynet , Jose Groh , Anahí Granada

How massive stars end their lives remains an open question in the field of star evolution. While the majority of stars above 9 M_sun will become red supergiants (RSGs), the terminal state of these massive stars can be heavily influenced by…

Solar and Stellar Astrophysics · Physics 2020-09-14 Michael S. Gordon , Roberta M. Humphreys

The fate of massive stars with initial masses >8M$_\odot$ depends largely on the mass-loss rate (\mdot ) in the end stages of their lives. Red supergiants (RSGs) are the direct progenitors to Type II-P core collapse supernovae (SN), but…

Solar and Stellar Astrophysics · Physics 2017-12-07 Emma R. Beasor , Ben Davies

With red supergiants (RSGs) predicted to end their lives as Type IIP core collapse supernova (CCSN), their behaviour before explosion needs to be fully understood. Mass loss rates govern RSG evolution towards SN and have strong implications…

Solar and Stellar Astrophysics · Physics 2017-11-15 Emma R. Beasor , Ben Davies

Red supergiants are the most common final evolutionary stage of stars that have initial masses between 8 and 35 times that of the Sun. During this stage, which lasts roughly 100,000 years1, red supergiants experience substantial mass loss.…

The post main-sequence evolution of massive stars is very sensitive to many parameters of the stellar models. Key parameters are the mixing processes, the metallicity, the mass-loss rate and the effect of a close companion. We study how the…

Solar and Stellar Astrophysics · Physics 2015-02-25 G. Meynet , V. Chomienne , S. Ekström , C. Georgy , A. Granada , J. Groh , A. Maeder , P. Eggenberger , E. Levesque , P. Massey

Betelgeuse is a well known bright red supergiant that shows semi-regular variations with four approximate periods of 2200, 420, 230, and 185 days. While the longest period was customarily regarded as LSP (long secondary period) of unknown…

Solar and Stellar Astrophysics · Physics 2023-09-27 Hideyuki Saio , Devesh Nandal , Georges Meynet , Sylvia Ekstöm

We study stellar models for Betelgeuse using the HR diagram and surface abundances as observational constraints. Previous studies on Betelgeuse have not systematically investigated the surface abundances, but we believe they can be impacted…

Solar and Stellar Astrophysics · Physics 2022-03-14 Tianyin Luo , Hideyuki Umeda , Takashi Yoshida , Koh Takahashi

We investigate the merger between a 16 solar mass star, on its way to becoming a red supergiant (RSG), and a 4 solar mass main-sequence companion. Our study employs three-dimensional hydrodynamic simulations using the state-of-the-art…

Solar and Stellar Astrophysics · Physics 2023-10-24 Sagiv Shiber , Emmanouil Chatzopoulos , Bradley Munson , Juhan Frank

In this paper, we discuss some consequences of rotation and mass loss on the evolved stages of massive star evolution. The physical reasons of the time evolution of the surface velocity are explained, and then we show how the late-time…

Solar and Stellar Astrophysics · Physics 2016-10-25 Cyril Georgy , Hideyuki Saio , Sylvia Ekström , Georges Meynet

Pulsations driven by partial ionization of hydrogen in the envelope are often considered important for driving winds from red supergiants (RSGs). In particular, it has been suggested by some authors that the pulsation growth rate in a RSG…

Solar and Stellar Astrophysics · Physics 2015-05-19 Sung-Chul Yoon , Matteo Cantiello

First, we review the main physical effects to be considered in the building of evolutionary models of rotating stars on the Upper Main-Sequence (MS). The internal rotation law evolves as a result of contraction and expansion, meridional…

Astrophysics · Physics 2009-10-31 Andre Maeder , Georges Meynet

We present the preliminary results of a detailed theoretical investigation on the hydrodynamical properties of Red Supergiant (RSG) stars at solar chemical composition and for stellar masses ranging from 10 to 20 M_sun. We find that the…

Astrophysics · Physics 2007-05-23 Nino Panagia , Giuseppe Bono

Stars are unique bodies of the Universe where self-gravity compress matter to such high temperature and density that several nuclear fusion reactions ignite, providing enough feedback against further compression for a time that can be even…

Solar and Stellar Astrophysics · Physics 2024-12-23 Alessandro Bressan , Kendall Gale Shepherd

In order to constrain the evolutionary state of the red supergiant Betelgeuse, we have produced a suite of models with ZAMS masses from 15 to 25 Msun in intervals of 1 Msun including the effects of rotation. The models were computed with…

Solar and Stellar Astrophysics · Physics 2017-01-25 J. Craig Wheeler , S. Nance , M. Diaz , S. G. Smith , J. Hickey , L. Zhou , M. Koutoulaki , J. M. Sullivan , J. M. Fowler

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…

Solar and Stellar Astrophysics · Physics 2020-03-11 Jared A. Goldberg , Lars Bildsten , Bill Paxton

The mass-loss rates of red supergiant stars (RSGs) are poorly constrained by direct measurements, and yet the subsequent evolution of these stars depends critically on how much mass is lost during the RSG phase. In 2012 the Geneva…

Mass-loss rates during the red supergiant phase are very poorly constrained from an observational or theoretical point of view. However, they can be very high, and make a massive star lose a lot of mass during this phase, influencing…

Solar and Stellar Astrophysics · Physics 2015-12-09 Cyril Georgy , Sylvia Ekström

A significant fraction of massive stars are moving supersonically through the interstellar medium (ISM), either due to disruption of a binary system or ejection from their parent star cluster. The interaction of their wind with the ISM…

Solar and Stellar Astrophysics · Physics 2012-05-10 Jonathan Mackey , Shazrene Mohamed , Hilding R. Neilson , Norbert Langer , Dominique M. -A. Meyer
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