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Recent stellar evolution computations indicate that massive stars in the range ~ 20 - 30 Msun are located in the blue supergiant (BSG) region of the Hertzsprung-Russell diagram at two different stages of their life: immediately after the…

Solar and Stellar Astrophysics · Physics 2015-06-22 C. Georgy , H. Saio , G. Meynet

As a star evolves off the Main Sequence, it endures major structural changes that are capable of determining the fate of the planets orbiting it. Throughout its evolution along the Red Giant Branch, the star increases its radius by two…

Earth and Planetary Astrophysics · Physics 2015-05-27 Eva Villaver

The influence of rotation on the properties of red giants is studied in the context of the asteroseismic modelling of these stars. While red giants exhibit low surface rotational velocities, we find that the rotational history of the star…

Solar and Stellar Astrophysics · Physics 2015-05-14 P. Eggenberger , A. Miglio , J. Montalban , O. Moreira , A. Noels , G. Meynet , A. Maeder

Context: Red super-giant (RSG) stars exhibit significant mass loss through a slow and dense wind. They are often considered to be the more massive counter parts of Asymptotic Giant Branch (AGB) stars. While the AGB mass loss is linked to…

Solar and Stellar Astrophysics · Physics 2009-11-13 T. Verhoelst , N. Van der Zypen , S. Hony , L. Decin , J. Cami , K. Eriksson

We suggest that the mass lost during the evolution of very massive stars may be dominated by optically thick, continuum-driven outbursts or explosions, instead of by steady line-driven winds. In order for a massive star to become a WR star,…

Astrophysics · Physics 2010-11-11 Nathan Smith , Stanley P. Owocki

We identify red supergiants (RSGs) in our spiral neighbors M31 and M33 using near-IR (NIR) photometry complete to a luminosity limit of log L/Lo=4.0. Our archival survey data cover 5 deg^2 of M31, and 3 deg^2 for M33, and are likely…

Solar and Stellar Astrophysics · Physics 2021-01-27 Philip Massey , Kathryn F. Neugent , Emily M. Levesque , Maria R. Drout , Stephane Courteau

How massive stars die -- what sort of explosion and remnant each produces -- depends chiefly on the masses of their helium cores and hydrogen envelopes at death. For single stars, stellar winds are the only means of mass loss, and these are…

Astrophysics · Physics 2009-11-07 A. Heger , C. L. Fryer , S. E. Woosley , N. Langer , D. H. Hartmann

Massive stars and their winds have a large influence in their environment, e.g, determining the accretion rate on to the Galactic Centre (GC) super-massive black hole Sgr A*. The winds of those stars collide and are accreted, at a rate that…

Solar and Stellar Astrophysics · Physics 2026-02-11 A. C. Gormaz-Matamala , J. Cuadra , B. Kubátová , J. Kubát , S. Ekström

By performing MHD simulations, we investigate the mass loss of intermediate- and low-mass stars from main sequence (MS) to red giant branch (RGB) phases. Alfven waves, which are excited by the surface convections travel outwardly and…

Astrophysics · Physics 2011-02-11 Takeru K. Suzuki

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.…

Close-in planets are in jeopardy as their host stars evolve off the main sequence to the subgiant and red giant phases. In this paper, we explore the influences of the stellar mass (in the range 1.5--2\Mso ), mass-loss prescription, planet…

Earth and Planetary Astrophysics · Physics 2015-06-22 Eva Villaver , Mario Livio , Alexander J. Mustill , Lionel Siess

We report mid- to far-infrared imaging and photomety from 7 to 37 microns with SOFIA/FORCAST and 2 micron adaptive optics imaging with LBTI/LMIRCam of a large sample of red supergiants (RSGs) in four Galactic clusters; RSGC1,…

Solar and Stellar Astrophysics · Physics 2020-09-09 Roberta M. Humphreys , Greta Helmel , Terry J. Jones , Michael S. Gordon

Low- and intermediate-mass stars eject much of their mass during the late, red giant branch (RGB) phase of evolution. The physics of their strong stellar winds is still poorly understood. In the standard model, stellar pulsations extend the…

Solar and Stellar Astrophysics · Physics 2016-06-08 Iain McDonald , Albert Zijlstra

In the past few years, several clusters containing large numbers of red supergiants have been discovered. These clusters are amongst the most massive young clusters known in the Milky Way, with stellar masses reaching a few…

Solar and Stellar Astrophysics · Physics 2018-03-21 Ignacio Negueruela

Massive stars are essential to understand a variety of branches of astronomy including galaxy and star cluster evolution, nucleosynthesis and supernovae, pulsars and black holes. It has become evident that massive star evolution is very…

Solar and Stellar Astrophysics · Physics 2012-12-13 N. Langer

The star-forming galaxies of the Local Group act as our laboratories for testing massive star evolutionary models. In this review, I briefly summarize what we believe we know about massive star evolution, and the connection between OB…

Solar and Stellar Astrophysics · Physics 2015-06-16 Philip Massey

Performing a series of hydrodynamic stellar evolutionary simulations with \textsc{Mesa} (Module for Experiments in Stellar Astrophysics), we investigate the excitation and growth of radial pulsations of massive red supergiants (RSGs) with…

Solar and Stellar Astrophysics · Physics 2025-09-19 Akihiro Suzuki , Toshikazu Shigeyama

The link between massive red galaxies in the local Universe and star-forming galaxies at high redshift is investigated with a semi-analytic model that has proven successful in many ways, e.g. explaining the galaxy colour-magnitude…

Cosmology and Nongalactic Astrophysics · Physics 2015-06-12 Andrea Cattaneo , Joanna Woo , Avishai Dekel , Sandra M. Faber

About ten percent of Sun-like ($1$-$2 M_\odot$) stars will engulf a $1$-$10 M_{\rm J}$ planet as they expand during the red giant branch (RGB) or asymptotic giant branch (AGB) phase of their evolution. Once engulfed, these planets…

Earth and Planetary Astrophysics · Physics 2023-06-28 Christopher E. O'Connor , Lars Bildsten , Matteo Cantiello , Dong Lai

Recent surveys have revealed a lack of close-in planets around evolved stars more massive than 1.2 Msun. Such planets are common around solar-mass stars. We have calculated the orbital evolution of planets around stars with a range of…

Earth and Planetary Astrophysics · Physics 2014-11-20 Eva Villaver , Mario Livio