A Contact Binary Mis-Classified as an Ellipsoidal Variable: Complications for Detached Black Hole Searches

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Autores principales: O'Doherty, Tyrone N., Bahramian, Arash, Goodwin, Adelle J., Miller-Jones, James C. A., Orosz, Jerome A., Strader, Jay
Formato: Preprint
Publicado: 2024
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author O'Doherty, Tyrone N.
Bahramian, Arash
Goodwin, Adelle J.
Miller-Jones, James C. A.
Orosz, Jerome A.
Strader, Jay
author_facet O'Doherty, Tyrone N.
Bahramian, Arash
Goodwin, Adelle J.
Miller-Jones, James C. A.
Orosz, Jerome A.
Strader, Jay
contents Identifying sources exhibiting ellipsoidal variability in large photometric surveys is becoming a promising method to search for candidate detached black holes in binaries. This technique aims to exploit the orbital-phase dependent modulation in optical photometry caused by the black hole distorting the shape of the luminous star to constrain the mass ratio of the binary. Without understanding if, or how much, contamination is present in the candidate black hole samples produced by this new technique it is hard to leverage them for black hole discovery. Here, we follow up one of the best candidates identified from Gaia Data Release 3, Gaia DR3 4042390512917208960, with a radial velocity campaign. Combined photometric and radial velocity modelling, along with spectral disentangling, suggests that the true mass ratio (mass of the unseen object divided by the mass of the luminous star) is an order of magnitude smaller than that inferred assuming the modulations arise from ellipsoidal variability. We therefore infer that this system is likely a contact binary, or on the boundary of both stars nearly filling their Roche lobes, however, further observations are required to confidently detect the secondary. We find that the well-known problem of discriminating between ellipsoidal and contact binary light curves results in a larger contamination from contact binaries than previously suggested. Until ellipsoidal variables can be reliably distinguished from contact binaries, samples of black hole candidates selected based on ellipsoidal variability are likely to be highly contaminated by contact binaries or similar systems.
format Preprint
id arxiv_https___arxiv_org_abs_2405_17772
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle A Contact Binary Mis-Classified as an Ellipsoidal Variable: Complications for Detached Black Hole Searches
O'Doherty, Tyrone N.
Bahramian, Arash
Goodwin, Adelle J.
Miller-Jones, James C. A.
Orosz, Jerome A.
Strader, Jay
Solar and Stellar Astrophysics
Astrophysics of Galaxies
High Energy Astrophysical Phenomena
Identifying sources exhibiting ellipsoidal variability in large photometric surveys is becoming a promising method to search for candidate detached black holes in binaries. This technique aims to exploit the orbital-phase dependent modulation in optical photometry caused by the black hole distorting the shape of the luminous star to constrain the mass ratio of the binary. Without understanding if, or how much, contamination is present in the candidate black hole samples produced by this new technique it is hard to leverage them for black hole discovery. Here, we follow up one of the best candidates identified from Gaia Data Release 3, Gaia DR3 4042390512917208960, with a radial velocity campaign. Combined photometric and radial velocity modelling, along with spectral disentangling, suggests that the true mass ratio (mass of the unseen object divided by the mass of the luminous star) is an order of magnitude smaller than that inferred assuming the modulations arise from ellipsoidal variability. We therefore infer that this system is likely a contact binary, or on the boundary of both stars nearly filling their Roche lobes, however, further observations are required to confidently detect the secondary. We find that the well-known problem of discriminating between ellipsoidal and contact binary light curves results in a larger contamination from contact binaries than previously suggested. Until ellipsoidal variables can be reliably distinguished from contact binaries, samples of black hole candidates selected based on ellipsoidal variability are likely to be highly contaminated by contact binaries or similar systems.
title A Contact Binary Mis-Classified as an Ellipsoidal Variable: Complications for Detached Black Hole Searches
topic Solar and Stellar Astrophysics
Astrophysics of Galaxies
High Energy Astrophysical Phenomena
url https://arxiv.org/abs/2405.17772