Double White Dwarf Binaries in SDSS-V DR19 : The discovery of a rare DA+DQ white dwarf binary with 31 hour orbital period

Fuente: arXiv
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Autori principali: Pallathadka, Gautham Adamane, Chandra, Vedant, Gansicke, Boris T., Zakamska, Nadia L., Koester, Detlev, Zenati, Yossef, Crumpler, Nicole R., Arseneau, Stefan M., Hermes, J. J., Schreiber, Matthias R., Stassun, Keivan G., Schwope, Axel, El-Badry, Kareem, Tovmassian, Gagik, Cunningham, Tim, Morrison, Sean
Natura: Preprint
Pubblicazione: 2025
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author Pallathadka, Gautham Adamane
Chandra, Vedant
Gansicke, Boris T.
Zakamska, Nadia L.
Koester, Detlev
Zenati, Yossef
Crumpler, Nicole R.
Arseneau, Stefan M.
Hermes, J. J.
Schreiber, Matthias R.
Stassun, Keivan G.
Schwope, Axel
El-Badry, Kareem
Tovmassian, Gagik
Cunningham, Tim
Morrison, Sean
author_facet Pallathadka, Gautham Adamane
Chandra, Vedant
Gansicke, Boris T.
Zakamska, Nadia L.
Koester, Detlev
Zenati, Yossef
Crumpler, Nicole R.
Arseneau, Stefan M.
Hermes, J. J.
Schreiber, Matthias R.
Stassun, Keivan G.
Schwope, Axel
El-Badry, Kareem
Tovmassian, Gagik
Cunningham, Tim
Morrison, Sean
contents Binaries of two white dwarfs (WDs) are an important class of astrophysical objects that are theorized to lead to Type Ia supernovae and are also used to gain insight into complex processes involved in stellar binary evolution. We report the discovery of SDSS~J090618.44+022311.6, a rare post-common envelope binary of a hydrogen atmospheric DA WD and a DQ WD which shows carbon absorption features, and is only the fourth such binary known. We combine the available spectroscopic, photometric, and radial velocity data to provide a self-consistent model for the binary and discuss its history as a binary DA+DQ. The system has a period of 31.17 hours with masses of 0.42 M$_{\odot}$ for DA WD and 0.49 M$_{\odot}$ for DQ WD. The corresponding cooling ages point to an Algol type of evolution with the lower mass star evolving into a DA WD first and later the massive DQ WD is formed. The system has a merger timescale of 450 Gyrs and will lead to the formation of a massive WD. With this, the number of known DA+DQ WD binaries has increased to four, and we find that their stellar properties all lie in the same range. Detailed study of more such systems is vital to understand common processes involved in the formation of this rare class of binaries and give insights towards the broader picture of WD spectral evolution.
format Preprint
id arxiv_https___arxiv_org_abs_2507_11618
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Double White Dwarf Binaries in SDSS-V DR19 : The discovery of a rare DA+DQ white dwarf binary with 31 hour orbital period
Pallathadka, Gautham Adamane
Chandra, Vedant
Gansicke, Boris T.
Zakamska, Nadia L.
Koester, Detlev
Zenati, Yossef
Crumpler, Nicole R.
Arseneau, Stefan M.
Hermes, J. J.
Schreiber, Matthias R.
Stassun, Keivan G.
Schwope, Axel
El-Badry, Kareem
Tovmassian, Gagik
Cunningham, Tim
Morrison, Sean
Solar and Stellar Astrophysics
Binaries of two white dwarfs (WDs) are an important class of astrophysical objects that are theorized to lead to Type Ia supernovae and are also used to gain insight into complex processes involved in stellar binary evolution. We report the discovery of SDSS~J090618.44+022311.6, a rare post-common envelope binary of a hydrogen atmospheric DA WD and a DQ WD which shows carbon absorption features, and is only the fourth such binary known. We combine the available spectroscopic, photometric, and radial velocity data to provide a self-consistent model for the binary and discuss its history as a binary DA+DQ. The system has a period of 31.17 hours with masses of 0.42 M$_{\odot}$ for DA WD and 0.49 M$_{\odot}$ for DQ WD. The corresponding cooling ages point to an Algol type of evolution with the lower mass star evolving into a DA WD first and later the massive DQ WD is formed. The system has a merger timescale of 450 Gyrs and will lead to the formation of a massive WD. With this, the number of known DA+DQ WD binaries has increased to four, and we find that their stellar properties all lie in the same range. Detailed study of more such systems is vital to understand common processes involved in the formation of this rare class of binaries and give insights towards the broader picture of WD spectral evolution.
title Double White Dwarf Binaries in SDSS-V DR19 : The discovery of a rare DA+DQ white dwarf binary with 31 hour orbital period
topic Solar and Stellar Astrophysics
url https://arxiv.org/abs/2507.11618