Characterizing planetary material accreted by cool helium atmosphere white dwarfs using an exponentially decaying disc model

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: O'Brien, Mairi W., Tremblay, Pier-Emmanuel, Klein, Beth L., Melis, Carl, Koester, Detlev, Buchan, Andrew M., Veras, Dimitri, Doyle, Alexandra E.
Format: Preprint
Published: 2025
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866913785619415040
author O'Brien, Mairi W.
Tremblay, Pier-Emmanuel
Klein, Beth L.
Melis, Carl
Koester, Detlev
Buchan, Andrew M.
Veras, Dimitri
Doyle, Alexandra E.
author_facet O'Brien, Mairi W.
Tremblay, Pier-Emmanuel
Klein, Beth L.
Melis, Carl
Koester, Detlev
Buchan, Andrew M.
Veras, Dimitri
Doyle, Alexandra E.
contents We present Keck High Resolution Echelle Spectrometer (HIRES) observations and model atmosphere analysis for two nearby, cool, helium-dominated atmosphere white dwarfs that have been polluted by accretion: WD J1927-0355 and WD J2141-3300. Detected elements common to both white dwarfs are Mg, Ca, Ti, Cr, Fe, and Ni, with additional detections of Na, Al, Si and Sr in WD J2141-3300. We present an approach for inferring the composition of the accreted material, by adopting a physically motivated model in which the mass accretion rate decays exponentially with time, which provides constraints on the time since the start of the accretion event. The accretion events were most likely to have began at least 1 Myr ago, however the characteristic disc lifetime could not be constrained due to degeneracies. Both white dwarfs were found to have accreted bulk planetary material with compositions similar to that of both bulk Earth and chondritic meteorites. The parent bodies causing pollution in both cases were inferred to be the mass of a small moon or dwarf planet.
format Preprint
id arxiv_https___arxiv_org_abs_2503_05345
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Characterizing planetary material accreted by cool helium atmosphere white dwarfs using an exponentially decaying disc model
O'Brien, Mairi W.
Tremblay, Pier-Emmanuel
Klein, Beth L.
Melis, Carl
Koester, Detlev
Buchan, Andrew M.
Veras, Dimitri
Doyle, Alexandra E.
Solar and Stellar Astrophysics
Earth and Planetary Astrophysics
We present Keck High Resolution Echelle Spectrometer (HIRES) observations and model atmosphere analysis for two nearby, cool, helium-dominated atmosphere white dwarfs that have been polluted by accretion: WD J1927-0355 and WD J2141-3300. Detected elements common to both white dwarfs are Mg, Ca, Ti, Cr, Fe, and Ni, with additional detections of Na, Al, Si and Sr in WD J2141-3300. We present an approach for inferring the composition of the accreted material, by adopting a physically motivated model in which the mass accretion rate decays exponentially with time, which provides constraints on the time since the start of the accretion event. The accretion events were most likely to have began at least 1 Myr ago, however the characteristic disc lifetime could not be constrained due to degeneracies. Both white dwarfs were found to have accreted bulk planetary material with compositions similar to that of both bulk Earth and chondritic meteorites. The parent bodies causing pollution in both cases were inferred to be the mass of a small moon or dwarf planet.
title Characterizing planetary material accreted by cool helium atmosphere white dwarfs using an exponentially decaying disc model
topic Solar and Stellar Astrophysics
Earth and Planetary Astrophysics
url https://arxiv.org/abs/2503.05345