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  4. Rr Lyrae From Binary Evolution: Abundant, Young, And Metal-Rich
 
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Rr Lyrae From Binary Evolution: Abundant, Young, And Metal-Rich

Journal
Monthly Notices of the Royal Astronomical Society
Date Issued
2023-12-23
Author(s)
Alexey Bobrick
Giuliano Iorio
Vasily Belokurov
Joris Vos
Vuckovic, Maja  
Facultad de Ciencias  
Nicola Giacobbo
DOI
10.1093/mnras/stad3996
WoS ID
WOS:001142376400023
Abstract
ABSTRACT RR Lyrae are a well-known class of pulsating horizontal branch stars widely used as tracers of old, metal-poor stellar populations. However, mounting observational evidence shows that a significant fraction of these stars may be young and metal-rich. Here, through detailed binary stellar evolution modelling, we show that all such metal-rich RR Lyrae can be naturally produced through binary interactions. Binary companions of these RR Lyrae stars formed through binary interactions partly strip their progenitor’s envelopes during a preceding red giant phase. As a result, stripped horizontal branch stars become bluer than their isolated stellar evolution counterparts and thus end up in the instability strip. In contrast, in the single evolution scenario, the stars can attain such colours only at large age and low metallicity. While binary-made RR Lyrae can possess any ages and metallicities, their Galactic population is relatively young (1 – $9\, {\rm Gyr}$) and dominated by the thin disc and the bulge. We show that Galactic RR Lyrae from binary evolution are produced at rates compatible with the observed metal-rich population and have consistent G-band magnitudes, Galactic kinematics, and pulsation properties. Furthermore, these systems dominate the RR Lyrae population in the solar neighbourhood. We predict that all metal-rich RR Lyrae have an A, F, G, or K-type companion with a long orbital period ($P \gtrsim 1000\, {\rm d}$). Observationally characterizing the orbital periods and masses of such stellar companions will provide valuable new constraints on mass and angular momentum-loss efficiency for Sun-like accretors and the nature of RR Lyrae populations.
Subjects

Astronomy And Astroph...

Space And Planetary S...

OCDE Subjects

Natural Sciences::Phy...

Quartile (Date Issued)
Q1
License
acceso abierto
Open Science Path
https://creativecommons.org/licenses/by/4.0/

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