English
Related papers

Related papers: Multidimensional Nova Simulations with an Extended…

200 papers

Symbiotic binaries are systems containing white dwarfs (WDs) and red giants. Symbiotic novae are those systems in which thermonuclear eruptions occur on the WD components. These are to be distinguished from events driven by accretion disk…

Solar and Stellar Astrophysics · Physics 2018-03-14 S. Starrfield , F. X. Timmes , C. Iliadis , W. R. Hix , W. D. Arnett , C. Meakin , W. M. Sparks

Classical novae are stellar explosions occurring in binary systems, consisting of a white dwarf and a main sequence companion. Thermonuclear runaways on the surface of massive white dwarfs, consisting of oxygen and neon, are believed to…

Solar and Stellar Astrophysics · Physics 2015-06-12 Lori N. Downen , Christian Iliadis , Jordi José , Sumner Starrfield

White dwarfs experience a thermal renaissance when they receive mass from a stellar companion in a binary. For accretion rates < 10^-8 Msun/yr, the freshly accumulated hydrogen/helium envelope ignites in a thermally unstable manner that…

Astrophysics · Physics 2009-11-07 Dean M. Townsley , Lars Bildsten

A classical nova occurs when material accreting onto the surface of a white dwarf in a close binary system ignites in a thermonuclear runaway. Complex structures observed in the ejecta at late stages could result from interactions with the…

Cataclysmic variable stars (CVs) are close binary systems consisting of a white dwarf (primary) that is accreting matter from a low-mass companion star (secondary). From time to time such systems undergo large-amplitude brightenings. The…

We explain the physics of compressional heating of the deep interior of an accreting white dwarf (WD) at accretion rates low enough so that the accumulated hydrogen burns unstably and initiates a classical nova (CN). In this limit, the WD…

Astrophysics · Physics 2007-05-23 Lars Bildsten , Dean M. Townsley

Novae are thermonuclear explosions on the surface of accreting white dwarfs and are key laboratories for studying explosive nucleosynthesis, particle acceleration, shock physics, and binary evolution. Despite major progress driven by…

Context. Classical novae are thermonuclear explosions that take place in the envelopes of accreting white dwarfs in stellar binary systems. The material transferred onto the white dwarf piles up under degenerate conditions, driving a…

Solar and Stellar Astrophysics · Physics 2016-09-21 Jordi Jose , Ghina M. Halabi , Mounib F. El Eid

Fluctuations during a prolonged maximum have been observed in several nova eruptions, although it is not clear, and can not be deduced directly from observations, if the phenomenon is an actual physical reaction to some mechanism…

Solar and Stellar Astrophysics · Physics 2022-08-16 Yael Hillman

We survey our understanding of classical novae: non-terminal, thermonuclear eruptions on the surfaces of white dwarfs in binary systems. The recent and unexpected discovery of GeV gamma-rays from Galactic novae has highlighted the…

High Energy Astrophysical Phenomena · Physics 2021-12-01 Laura Chomiuk , Brian D. Metzger , Ken J. Shen

Classical novae are powered by thermonuclear runaways that occur on the white dwarf component of close binary systems. During these violent stellar events, whose energy release is only exceeded by gamma-ray bursts and supernova explosions,…

Solar and Stellar Astrophysics · Physics 2010-04-19 Jordi Casanova , Jordi Jose , Enrique Garcia-Berro , Alan Calder , Steven N. Shore

X-ray spectra of dwarf novae in quiescence observed by Chandra and XMM-Newton provide new information on the boundary layers of their accreting white dwarfs. Comparison of observations and models allows us to extract estimates for the…

Astrophysics · Physics 2009-11-13 F. K. Liu , F. Meyer , E. Meyer-Hofmeister , V. Burwitz

We report on studies of Classical Nova (CN) explosions where we follow the evolution of thermonuclear runaways (TNRs) on oxygen-neon (ONe) white dwarfs (WDs). Using NOVA, a one-dimensional hydrodynamic computer code, we accrete Solar matter…

Solar and Stellar Astrophysics · Physics 2024-01-05 Sumner Starrfield , Maitrayee Bose , Christian Iliadis , W. Raphael Hix , Charles E. Woodward , R. Mark Wagner

We use a combined binary evolution code including dynamical effects to study nova eruptions in a symbiotic system. Following the evolution, over $\sim10^5$ years, of multiple consecutive nova eruptions on the surface of a $1.25M_\odot$…

Solar and Stellar Astrophysics · Physics 2020-11-25 Yael Hillman , Amit Kashi

We describe the results of numerical simulations of the dynamics of the boundary layer (BL) between the accretion disk and the surface of a non-magnetic white dwarf (WD) for different viscosities which corresponds to different stages for…

Astrophysics · Physics 2015-06-24 Jacob Lund Fisker , Dinshaw S. Balsara

For very slow white dwarf accretors in CV's Townsley and Bildsten (2004) found a relation between the accretion rate and the central temperature of the white dwarf Tc. According to this relation for accretion rates less than 10^-10 solar…

Astrophysics · Physics 2015-05-13 S. Ami Glasner , Jame. W. Truran

We present the results of two-dimensional calculations of turbulent nuclear burning of hydrogen-rich material accreted onto a white dwarf of 1 solar mass. The main aim of the present paper is to investigate the question as to whether and…

Astrophysics · Physics 2008-11-26 A. Kercek , W. Hillebrandt , J. Truran

Classical novae are common cataclysmic events involving a binary system of a white dwarf and a main sequence or red giant companion star. In metal-poor environments, these explosions produce ejecta different from their solar counterparts…

High Energy Astrophysical Phenomena · Physics 2025-08-06 Athanasios Psaltis , Jordi José , Richard Longland , Christian Iliadis

A proposed setting for thermonuclear (Type Ia) supernovae is a white dwarf that has gained mass from a companion to the point of carbon ignition in the core. There is a simmering phase in the early stages of burning that involves the…

Solar and Stellar Astrophysics · Physics 2024-04-26 Brendan Boyd , Alexander Smith Clark , Alan C. Calder , Dean M. Townsley , Michael Zingale