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Related papers: Very low mass white dwarfs with a C-O core

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We study the full evolution of a 1.313 Msun white dwarf star that descended from a 9 Msun main-sequence progenitor with an initial metallicity of Z=0.02. Using MESA r24.08.01, we calculate its entire evolution from pre-ZAMS to the WD…

Solar and Stellar Astrophysics · Physics 2026-03-12 Ana S. R. Antonini , Alejandra D. Romero , S. O. Kepler

The maximum mass of a star that can produce a white dwarf (WD) is an important astrophysical quantity. One of the best approaches to establishing this limit is to search for WDs in young star clusters in which only massive stars have had…

We present evolutionary calculations and colors for massive white dwarfs with oxygen-neon cores for masses between 1.06 and 1.28 Mo. The evolutionary stages computed cover the luminosity range from log(L/Lo) approx. 0.5 down to -5.2. Our…

Astrophysics · Physics 2016-08-14 L. G. Althaus , E. García-Berro , J. Isern , A. H. Córsico , R. D. Rohrmann

Helium core white dwarfs (WDs) with mass M <~ 0.20 Msun undergo several Gyrs of stable hydrogen burning as they evolve. We show that in a certain range of WD and hydrogen envelope masses, these WDs may exhibit g-mode pulsations similar to…

Solar and Stellar Astrophysics · Physics 2015-05-19 Justin D. R. Steinfadt , Lars Bildsten , Phil Arras

(Abridged abstract) We explore the formation of ultra-massive (M_{\rm WD} \gtrsim 1.05 M_\sun$), carbon-oxygen core white dwarfs resulting from single stellar evolution. We also study their evolutionary and pulsational properties and…

Extremely low-mass white dwarfs (ELM WDs) are helium WDs with a mass less than $\sim$$0.3\rm\;M_\odot$. Most ELM WDs are found in double degenerates (DDs) in the ELM Survey led by Brown and Kilic. These systems are supposed to be…

Solar and Stellar Astrophysics · Physics 2019-03-01 Zhenwei Li , Xuefei Chen , Hai-Liang Chen , Zhanwen Han

White dwarfs accreting from helium stars can stably burn at the accreted rate and avoid the challenge of mass loss associated with unstable Helium burning that is a concern for many Type Ia supernovae scenarios. We study binaries with…

High Energy Astrophysical Phenomena · Physics 2016-04-20 Jared Brooks , Lars Bildsten , Josiah Schwab , Bill Paxton

A hybrid C/O/Ne white dwarf (WD) -- an unburned C/O core surrounded by an O/Ne/Na mantle -- can be formed if the carbon flame is quenched in a super-AGB (SAGB) star or white dwarf merger remnant. We show that this segregated hybrid…

Solar and Stellar Astrophysics · Physics 2017-01-18 Jared Brooks , Josiah Schwab , Lars Bildsten , Eliot Quataert , Bill Paxton

We present stellar evolution calculations of the remnant of the merger of two carbon-oxygen white dwarfs (CO WDs). We focus on cases that have a total mass in excess of the Chandrasekhar mass. After the merger, the remnant manifests as an…

Solar and Stellar Astrophysics · Physics 2016-09-07 Josiah Schwab , Eliot Quataert , Daniel Kasen

The purpose of this work is to explore the evolution of helium-core white dwarf stars in a self-consistent way with the predictions of detailed non-gray model atmospheres and element diffusion. To this end, we consider helium-core white…

Astrophysics · Physics 2009-11-06 A. M. Serenelli , L. G. Althaus , R. D. Rohrmann , O. G. Benvenuto

Low mass helium-core white dwarfs (M < 0.45 Msun) can be produced from interacting binary systems, and traditionally all of them have been attributed to this channel. However, a low mass white dwarf could also result from a single star that…

Astrophysics · Physics 2009-11-13 Mukremin Kilic , K. Z. Stanek , M. H. Pinsonneault

Accreting white dwarfs (WDs) with non-degenerate companions are expected to emit in soft X-rays and the UV, if accreted H-rich material burns stably. They are an important component of the unresolved emission of elliptical galaxies, and…

Solar and Stellar Astrophysics · Physics 2015-09-16 Hai-Liang Chen , T. E. Woods , L. R. Yungelson , M. Gilfanov , Zhanwen Han

We calculate the stellar evolution of both white dwarfs (WDs) in AM CVn binaries with orbital periods of $P_{\mathrm{orb}} \approx 5-70$ minutes. We focus on the cases where the donor starts as a $M_{\mathrm{He}} < 0.2 \, M_{\odot}$ Helium…

Solar and Stellar Astrophysics · Physics 2021-12-22 Tin Long Sunny Wong , Lars Bildsten

Radiation feedback from massive population III stars may have given rise to low mass star formation from primordial or nearly primordial material. If early universe low mass stars did form, some should remain locally as white dwarfs,…

Solar and Stellar Astrophysics · Physics 2023-08-25 T. M. Lawlor , J. MacDonald

The final stages of the evolution of electron--degenerate ONe cores, resulting from carbon burning in ``heavy weight'' intermediate--mass stars ($8 M_{\sun}\la M \la 11 M_{\sun}$) and growing in mass, either from carbon burning in a shell…

Astrophysics · Physics 2009-11-10 J. L. Gutierrez , R. Canal , E. Garcia-Berro

Although multidimensional simulations have investigated the processes of double WD mergers, post-merger evolution only focused on the carbon-oxygen (CO) WD or helium (He) WD merger remnants. In this work, we investigate for the first time…

Solar and Stellar Astrophysics · Physics 2023-03-10 Chengyuan Wu , Heran Xiong , Jie Lin , Yunlang Guo , Xiaofeng Wang , Zhanwen Han , Bo Wang

We present a grid of evolutionary tracks for low-mass white dwarfs with helium cores in the mass range from 0.179 to 0.414 Msol. The lower mass limit is well-suited for comparison with white dwarf companions of millisecond pulsars. The…

Astrophysics · Physics 2007-05-23 T. Driebe , D. Sch"onberner , T. Bl"ocker , F. Herwig

Stellar evolution models predict the existence of hybrid white dwarfs (WDs) with a carbon-oxygen core surrounded by an oxygen-neon mantle. Being born with masses ~1.1 Msun, hybrid WDs in a binary system may easily approach the Chandrasekhar…

High Energy Astrophysical Phenomena · Physics 2015-05-18 M. Kromer , S. T. Ohlmann , R. Pakmor , A. J. Ruiter , W. Hillebrandt , K. S. Marquardt , F. K. Roepke , I. R. Seitenzahl , S. A. Sim , S. Taubenberger

The astrophysical origins of the heaviest stable elements that we observe today in the Solar System are still not fully understood. Recent studies have demonstrated that H-accreting white dwarfs (WDs) in a binary sys- tem exploding as type…

Solar and Stellar Astrophysics · Physics 2026-01-13 Umberto Battino , Claudia Lederer-Woods , Claudia Travaglio , Friedrich Konrad Röpke , Brad Gibson

The evolution of a star of initial mass 10 $M_{\odot}$, and metallicity $Z = 0.02$ in a Close Binary System (CBS) is followed from its main sequence until an ONe degenerate remnant forms. Restrictions have been made on the characteristics…

Astrophysics · Physics 2009-11-06 P. Gil-Pons , E. Garcia-Berro