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Related papers: White dwarf collisions and the meteoritic Ne-E ann…

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Because of the large neutron excess of $^{22}$Ne, this isotope rapidly sediments in the interior of the white dwarfs. This process releases an additional amount of energy, thus delaying the cooling times of the white dwarf. This influences…

We present HST ultraviolet spectroscopy of the white dwarfs PG0843+516, PG1015+161, SDSS1228+1040, and GALEX1931+0117, which accrete circumstellar planetary debris formed from the destruction of asteroids. Combined with optical data, a…

Earth and Planetary Astrophysics · Physics 2012-07-31 B. T. Gaensicke , D. Koester , J. Farihi , J. Girven , S. G. Parsons , E. Breedt

Approximately $0.2 \pm 0.2$ of white dwarfs (WDs) show signs of pollution by metals, which is likely due to the accretion of tidally disrupted planetary material. Models invoking planet-planet interactions after WD formation generally…

Earth and Planetary Astrophysics · Physics 2016-08-03 Adrian S. Hamers , Simon F. Portegies Zwart

Eighteen years after an infrared excess was discovered associated with the white dwarf G29-38, we report ground-based measurements (JHKL'N') with mJy-level sensitivity of GD 362 that show it to be a second single white dwarf with an…

Astrophysics · Physics 2009-11-13 E. E. Becklin , J. Farihi , M. Jura , Inseok Song , A. J. Weinberger , B. Zuckerman

Supernovae (SNe) are thought to arise from two different physical processes. The cores of massive, short-lived stars undergo gravitational core collapse and typically eject a few solar masses during their explosion. These are thought to…

White dwarfs with metal pollution are caused by the accretion of rocky dust from tidally disrupted minor bodies and are signposts for planetary systems. These minor bodies are perturbed by planets that have survived post-main sequence…

We have investigated the origin of a sub-class of carbon-polluted white dwarfs (DQ) originally identified as the ``hot DQ" white dwarfs. These objects are relatively hot (10 000 < T_eff < 25 000 K), have markedly higher carbon abundance…

Solar and Stellar Astrophysics · Physics 2023-03-01 Adela Kawka , Lilia Ferrario , Stephane Vennes

The bulk abundances of exoplanetesimals can be measured when they are accreted by white dwarfs. Recently, lithium from the accretion of exoplanetesimals was detected in relatively high levels in multiple white dwarfs. There are presently…

Earth and Planetary Astrophysics · Physics 2024-12-04 Benjamin C. Kaiser , J. Christopher Clemens , Simon Blouin , Erik Dennihy , Patrick Dufour , Ryan J. Hegedus , Joshua S. Reding

In the past few decades, observations have revealed signatures of metals polluting the atmospheres of white dwarfs. The diffusion timescale for metals to sink from the atmosphere of a white dwarf is of the order of days for a…

Earth and Planetary Astrophysics · Physics 2018-07-10 Jeremy L. Smallwood , Rebecca G. Martin , Mario Livio , Stephen H. Lubow

Sulfur abundances derived from optical emission line measurements and ionization correction factors in planetary nebulae are systematically lower than expected for the objects' metallicities. We have carefully considered a large range of…

Astrophysics of Galaxies · Physics 2015-06-04 R. B. C. Henry , A. Speck , A. I. Karakas , G. J. Ferland , M. Maguire

Cool white dwarf stars are usually found to have an outer atmosphere that is practically pure in hydrogen or helium. However, a small fraction have traces of heavy elements that must originate from the accretion of extrinsic material, most…

Solar and Stellar Astrophysics · Physics 2015-05-19 P. Dufour , M. Kilic , G. Fontaine , P. Bergeron , F. -R. Lachapelle , S. J. Kleinman , S. K. Leggett

White dwarf stars frequently experience external pollution by heavy elements, and yet the intrinsically carbon-enriched DQ spectral class members fail to exhibit this phenomenon, representing a decades-old conundrum. This study reports a…

Solar and Stellar Astrophysics · Physics 2024-04-19 J. Farihi , P. Dufour , T. G. Wilson

Previously published observations of 60 externally-polluted white dwarfs show that none of the stars have accreted from intact refractory-dominated parent bodies composed mainly of Al, Ca and O, although planetesimals with such a…

Earth and Planetary Astrophysics · Physics 2015-06-12 M. Jura , S. Xu

Dwarf irregular galaxies appear to have undergone very slow chemical evolution since they have low nebular abundances, but have had ongoing star formation over the past 15 Gyr. They are too distant for red giant abundance analyses to…

Astrophysics · Physics 2007-05-23 Kim Venn , Eline Tolstoy , Andreas Kaufer , Rolf Peter Kudritzki

We report the identification of 19 presolar oxide grains from the Orgueil CI meteorite with substantial enrichments in $^{54}$Cr, with $^{54}$Cr/$^{52}$Cr ratios ranging from 1.2 to 56 times the solar value. The most enriched grains also…

Earth and Planetary Astrophysics · Physics 2018-04-11 Larry R. Nittler , Conel M. O'D. Alexander , Nan Liu , Jianhua Wang

We report the results of a coherent study of three chemically anomalous metal-poor ([Fe/H] ~ -2) stars. These objects exhibit unusually low abundances of Mg, Si, Ca (alpha-elements) and Sr, Y, and Ba (neutron-capture elements). Our analyses…

Orbital decay mechanisms argue that double white dwarf mergers are inevitable, but extremely rare. Whilst some mergers result in explosions, the survivors re-ignite helium and burn brightly for tens of thousands or millions of years.…

Solar and Stellar Astrophysics · Physics 2020-12-22 Simon Jeffery , Xianfei Zhang

Novae have been reported as transients for more than two thousand years. Their bright optical outbursts are the result of explosive nuclear burning of gas accreted from a binary companion onto a white dwarf. Novae containing a white dwarf…

Solar and Stellar Astrophysics · Physics 2015-09-29 Julian P. Osborne

The infrared excess around the white dwarf G29-38 can be explained by emission from an opaque flat ring of dust with an inner radius 0.14 of the radius of the Sun and an outer radius approximately equal to the Sun's. This ring lies within…

Astrophysics · Physics 2009-11-07 M. Jura

The Wolf-Rayet (WR) phenomenon is widespread in astronomy. It involves classical WRs, very massive stars (VMS), WR central stars of planetary nebula CSPN [WRs], and supernovae (SNe). But what is the root cause for a certain type of object…

Solar and Stellar Astrophysics · Physics 2015-10-02 Jorick S. Vink