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Both the core collapse of rotating massive stars, and the coalescence of neutron star (NS) binaries, result in the formation of a hot, differentially rotating NS remnant. The timescales over which differential rotation is removed by…

High Energy Astrophysical Phenomena · Physics 2022-11-09 Ben Margalit , Adam S. Jermyn , Brian D. Metzger , Luke F. Roberts , Eliot Quataert

We show that the recent realization that isolated post-extreme horizontal branch (post-EHB) stars are generally characterized by rotational broadening with values of $V_{\rm rot} \sin i$ between 25 and 30 km~s$^{-1}$ can be explained as a…

Solar and Stellar Astrophysics · Physics 2018-06-13 G. Fontaine , M. Latour

We constructed some main-sequence mergers from case A binary evolution and studied their characteristics via Eggleton's stellar evolution code. Both total mass and orbital angular momentum are conservative in our binary evolutions. Some…

Astrophysics · Physics 2009-11-13 Xuefei Chen , Zhanwen Han

Most close double helium white dwarfs will merge within a Hubble time due to orbital decay by gravitational-wave radiation. However, a significant fraction with low mass ratios will survive for a long time as a consequence of stable mass…

Solar and Stellar Astrophysics · Physics 2018-01-11 Xianfei Zhang , Jinzhong Liu , C. Simon Jeffery , Philip D. Hall , Shaolan Bi

We present a detailed calculation of the evolution of low-mass ($< 0.25~M_\odot $) helium white dwarfs. These white dwarfs (the optical companions to binary millisecond pulsars) are formed via long-term, low-mass binary evolution. After…

Astrophysics · Physics 2009-10-31 Marek J. Sarna , Ene Ergma , Jelena Antipova

Binary evolution predicts a population of helium core (M < 0.5 Msol) white dwarfs (WDs) that are slowly accreting hydrogen-rich material from low mass main sequence or brown dwarf donors with orbital periods less than four hours. Four…

High Energy Astrophysical Phenomena · Physics 2011-02-11 Ken J. Shen , Irit Idan , Lars Bildsten

We derive the effective temperatures and gravities of 461 OB stars in 19 young clusters by fitting the H-gamma profile in their spectra. We use synthetic model profiles for rotating stars to develop a method to estimate the polar gravity…

Astrophysics · Physics 2008-11-26 W. Huang , D. R. Gies

We present the first evolutionary models of intermediate mass stars up to their thermal pulses which include effects of rotation on the stellar structure as well as rotationally induced mixing of chemical species and angular momentum. We…

Astrophysics · Physics 2007-05-23 N. Langer , A. Heger , S. Wellstein , F. Herwig

Stars between two and three solar masses rotate rapidly on the main sequence, and the detection of slow core and surface rotation in the core-helium burning phase for these stars places strong constraints on their angular momentum transport…

Solar and Stellar Astrophysics · Physics 2020-01-08 Jamie Tayar , Paul G. Beck , Marc H. Pinsonneault , Rafael A. García , Savita Mathur

If the angular momentum of the molecular cloud core were conserved during the star formation process, a new-born star would rotate much faster than its fission speed. This constitutes the angular momentum problem of new-born stars. In this…

Astrophysics · Physics 2009-10-31 Kohji Tomisaka

Helium white dwarfs (HeWDs) are thought to form from low-mass red giant stars experiencing binary interaction. Because the helium core mass of a red giant star is closely related to the stellar radius, there exists well-known relation…

Solar and Stellar Astrophysics · Physics 2023-08-11 Shi-Jie Gao , Xiang-Dong Li

In close binaries mass and angular momentum can be transferred from one star to the other during Roche-lobe overflow. The efficiency of this process is not well understood and constitutes one of the largest uncertainties in binary…

Astrophysics · Physics 2008-11-26 S. E. de Mink , O. R. Pols , E. Glebbeek

Most subdwarf B (sdB) + Helium white dwarf (He WD) binaries are believed to be formed from a particular channel. In this channel, the He WDs are produced first from red giants (RGs) with degenerate cores via stable mass transfer and sdB…

Solar and Stellar Astrophysics · Physics 2021-07-07 Yangyang Zhang , Hai-Liang Chen , Heran Xiong , Xuefei Chen , Zhanwen Han

I present results from numerical N-body simulations regarding the effect of merging events on the angular momentum distribution of galactic halos as well as a comparison of halo growth in Press-Schechter vs. N-body methods. A total of six…

Astrophysics · Physics 2009-10-31 Jeffrey P. Gardner

Rotation can have severe consequences for the evolution of massive stars. It is now considered as one of the main parameters, alongside mass and metallicity that determine the final fate of single stars. In massive, fast rotating stars…

Solar and Stellar Astrophysics · Physics 2015-05-20 S. E. de Mink , M. Cantiello , N. Langer , O. R. Pols

Context. Globular clusters host stars with chemical peculiarities. The associated helium enrichment is expected to affect the evolution of stars, in general, and of low-mass stars, and in particular the progenitors of white dwarfs (WDs).…

Solar and Stellar Astrophysics · Physics 2017-04-26 W. Chantereau , C. Charbonnel , G. Meynet

Binary systems of two carbon-oxygen white dwarfs are one of the most promising candidates for the progenitor systems of Type Ia supernovae. Violent mergers, where the primary white dwarf ignites when the secondary white dwarf smashes onto…

Double white dwarf binaries (DWDBs) with Helium components are progenitors to AM CVn binary systems. Their Galactic production rate may be given by the number of stably mass transferring DWDBs in the Milky Way. The theoretical criteria for…

Solar and Stellar Astrophysics · Physics 2026-03-26 Lucy O. McNeill , Ryosuke Hirai

We quantify an evolutionary channel for single sdB stars based on mergers of binaries containing a red giant star and a lower mass main sequence or brown dwarf companion in our Galaxy. Population synthesis calculations that follow mergers…

Astrophysics · Physics 2009-11-13 Michael Politano , Ronald E. Taam , Marc van der Sluys , Bart Willems

The collapsar model, the now leading model for the engine behind gamma-ray bursts and hypernovae, requires that a star collapses to form a black hole surrounded by an accretion disk of high-angular momentum material. The current best…

Astrophysics · Physics 2009-11-10 Chris L. Fryer , Alexander Heger
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