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Star clusters can interact and merge in galactic discs, halos, or centers. We present direct N-body simulations of binary mergers of star clusters with $M_{\star} = 2.7 \times 10^4 \: \mathrm{M_{\odot}}$ each, using the N-body code BIFROST…

Astrophysics of Galaxies · Physics 2025-03-18 Lazaros Souvaitzis , Antti Rantala , Thorsten Naab

As they evolve, white dwarfs undergo major changes in surface composition, a phenomenon known as spectral evolution. In particular, some stars enter the cooling sequence with helium atmospheres (type DO) but eventually develop hydrogen…

Solar and Stellar Astrophysics · Physics 2020-10-07 A. Bédard , P. Bergeron , P. Brassard , G. Fontaine

In galactic centers, stars and binaries can be injected into low-angular-momentum orbits, resulting in close encounters with the central supermassive black hole (SMBH). Previous works have shown that under different conditions, such close…

High Energy Astrophysical Phenomena · Physics 2024-12-20 Fangyuan Yu , Dong Lai

Numerical and observational evidence suggests that massive white dwarfs dominate the innermost regions of core-collapsed globular clusters by both number and total mass. Using NGC 6397 as a test case, we constrain the features of white…

Mergers of white dwarfs (WDs) may lead to a variety of transient astrophysical events, SNIa being one possible outcome. Lyutikov & Toonen (2017, 2019) argued that mergers of WDs result, under various parameter regimes, in unusual central…

High Energy Astrophysical Phenomena · Physics 2019-10-17 Maxim Lyutikov , Silvia Toonen

We discuss the properties of stellar mass black hole (BH) mergers induced by tidal encounters with a massive BH at galactic centres or potentially in dense star clusters. The tidal disruption of stellar binaries by a massive BH is known to…

High Energy Astrophysical Phenomena · Physics 2019-05-31 Joseph John Fernández , Shiho Kobayashi

Double white dwarf (double-WD) binaries may merge within a Hubble time and produce high-mass WDs. Compared to other high-mass WDs, the double-WD merger products have higher velocity dispersion because they are older. With the power of Gaia…

Solar and Stellar Astrophysics · Physics 2020-03-20 Sihao Cheng , Jeffrey D. Cummings , Brice Ménard , Silvia Toonen

The observational consequences of the merger scenario for massive star formation are explored and contrasted with the gradual accumulation of mass by accretion. Protostellar mergers may produce high luminosity infrared flares lasting years…

Astrophysics · Physics 2014-10-13 John Bally , Hans Zinnecker

White dwarfs represent the endpoint of stellar evolution for stars with initial masses between approximately 0.07 msun and 8-10 msun, where msun is the mass of the Sun (more massive stars end their life as either black holes or neutron…

Astrophysics · Physics 2009-11-13 P. Dufour , James Liebert , G. Fontaine , N. Behara

We examine rare evolutionary routes of binary systems where the initially more massive primary star of ~5.5-8.5Mo, forms a white dwarf (WD), while the secondary star of 4Mo < M_2,0 < M_1,0 accretes mass from the evolved primary and later…

Solar and Stellar Astrophysics · Physics 2014-03-05 Efrat Sabach , Noam Soker

Ultra-massive white dwarfs (UMWDs) with masses larger than 1.05Msun are basically believed to harbour oxygen-neon (ONe) cores. Recently, Gaia data reveals an enhancement of UMWDs on Hertzsprung-Russell diagram (HRD), which indicates that…

Solar and Stellar Astrophysics · Physics 2022-04-06 Chengyuan Wu , Heran Xiong , Xiaofeng Wang

We systematically explore the evolution of the merger of two carbon-oxygen (CO) white dwarfs. The dynamical evolution of a 0.9 Msun + 0.6 Msun CO white dwarf merger is followed by a three-dimensional SPH simulation. We use an elaborate…

Astrophysics · Physics 2019-08-19 Sung-Chul Yoon , Philipp Podsiadlowski , Stephan Rosswog

We propose a scenario to form low-mass, single, slow rotating white dwarfs from a solar-like star accompanied by a massive planet, or a brown dwarf, in a relatively close orbit (e.g. HD 89707). Such white dwarfs were recently found by…

Astrophysics · Physics 2007-05-23 G. Nelemans , T. M. Tauris

I study the possibility that within the frame of the core degenerate (CD) scenario for type Ia supernovae (SNe Ia) the merger process of the core of the asymptotic giant branch (AGB) star and the white dwarf (WD) maintains an envelope mass…

High Energy Astrophysical Phenomena · Physics 2022-08-17 Noam Soker

Helium star - carbon-oxygen white dwarf (CO WD) binaries are potential single-degenerate progenitor systems of thermonuclear supernovae. Revisiting a set of binary evolution calculations using the stellar evolution code $\texttt{MESA}$, we…

Solar and Stellar Astrophysics · Physics 2021-12-22 Tin Long Sunny Wong , Josiah Schwab , Ylva Götberg

We perform smoothed particle hydrodynamics (SPH) simulations for merging binary carbon-oxygen (CO) white dwarfs (WDs) with masses of $1.1$ and $1.0$ $M_\odot$, until the merger remnant reaches a dynamically steady state. Using these…

High Energy Astrophysical Phenomena · Physics 2015-04-24 Ataru Tanikawa , Naohito Nakasato , Yushi Sato , Ken'ichi Nomoto , Keiichi Maeda , Izumi Hachisu

We estimate the merger rate of double degenerate binaries containing extremely low mass (ELM) <0.3 Msun white dwarfs in the Galaxy. Such white dwarfs are detectable for timescales of 0.1 Gyr -- 1 Gyr in the ELM Survey; the binaries they…

Solar and Stellar Astrophysics · Physics 2016-06-15 Warren R. Brown , Mukremin Kilic , Scott J. Kenyon , A. Gianninas

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…

The evolution of central stars of planetary nebulae can proceed in several distinct ways, either leading to H-deficiency or to H-normal surface composition. Several new simulations of the evolution channels that lead to H-deficiency are now…

Astrophysics · Physics 2009-11-11 Falk Herwig , Bernd Freytag , Klaus Werner

We follow the evolution of helium stars of initial mass $(2.2 - 2.5) M_\odot$, and show that they undergo off-center carbon burning, which leaves behind ${\mathbf \sim 0.01 M_\odot}$ of unburnt carbon in the inner part of the core. When the…

Astrophysics · Physics 2007-10-23 Roni Waldman , Lev R. Yungelson , Zalman Barkat