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  4. Common Envelope Evolution And Triple Dynamics As Potential Pathways To Form The Inner White Dwarf Plus Brown Dwarf Binary Of The Triple Star System Gaia 0007-1605
 
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Common Envelope Evolution And Triple Dynamics As Potential Pathways To Form The Inner White Dwarf Plus Brown Dwarf Binary Of The Triple Star System Gaia 0007-1605

Journal
Monthly Notices of the Royal Astronomical Society
Date Issued
2022-12-13
Author(s)
Felipe Lagos
Matthias R Schreiber
B T Gänsicke
Zorotovic, Mónica  
Facultad de Ciencias  
DOI
10.1093/mnras/stac3675
WoS ID
WOS:000909578700011
Abstract
ABSTRACT The recently discovered system Gaia 0007−1605 consisting of a white dwarf (WD) with a close brown dwarf companion and a distant WD tertiary very much resembles the triple system containing the first transiting planet candidate around a WD ever discovered: WD 1856+534. We have previously argued that the inner binary in WD 1856+534 most likely formed through common envelope evolution but triple star dynamics represent an alternative scenario. Here, we analyse different formation scenarios for Gaia 0007−1605. We reconstructed the potential common envelope evolution of the system and found that assuming standard parameters for the energy budget provides a reasonable solution. In agreement with other close white dwarf + brown dwarf binaries, and in contrast to WD 1856+534, no energy sources other than orbital energy during common envelope evolution are required to understand the current configuration of the system. In addition, using analytical prescriptions for triple dynamics, we show that Von Zeipel–Lidov–Kozai oscillations might have triggered tidal migration due to high-eccentricity incursions (e ≳ 0.997). We conclude that the inner binary in Gaia 0007−1605, as its sibling WD 1856+534, formed either through common envelope evolution, triple dynamics, or a combination of both mechanisms.
Subjects

Astronomy And Astroph...

Space And Planetary S...

OCDE Subjects

Natural Sciences::Phy...

Quartile (Date Issued)
Q1
License
acceso abierto

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