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A Buddy for Betelgeuse: Binarity as the Origin of the Long Secondary Period in $\alpha$ Orionis

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arxiv 2408.09089 v2 pith:JYXMU6L6 submitted 2024-08-17 astro-ph.SR astro-ph.HE

classification astro-ph.SRastro-ph.HE
keywords betelgeusecompanionalphabinarityexistencefundamentallongodot
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abstract

We predict the existence of $\alpha$ Ori B, a low-mass companion orbiting Betelgeuse. This is motivated by the presence of a 2170-day Long Secondary Period (LSP) in Betelgeuse's lightcurve, a periodicity $\approx5$ times longer than the star's 416 day fundamental radial pulsation mode. While binarity is currently the leading hypothesis for LSPs in general, the LSP and the radial velocity variation observed in Betelgeuse, taken together, necessitate a revision of the prevailing physical picture. The lightcurve-RV phase difference requires a companion to be behind Betelgeuse at the LSP luminosity minimum, 180 degrees out of phase with the system orientation associated with occultation. We demonstrate the consistency of this model with available observational constraints and identify tensions in all other proposed LSP hypotheses. Within this framework, we calculate a mass for $\alpha$ Ori B of $M\sin i =1.17\pm0.7\,M_\odot$ and an orbital separation of $1850\pm70\,R_\odot$, or $2.43^{+0.21}_{-0.32}$ times the radius of Betelgeuse. We then describe the features of the companion as constrained by the fundamental parameters of Betelgeuse and its orbital system, and discuss what would be required to confirm the companion's existence observationally.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. White Dwarf Kicks via Episodic Mass Ejection from Red Giant Stars

    astro-ph.SR 2026-08 conditional novelty 7.0 of 10

    Episodic, asymmetric mass loss from red giants yields a random-walk accumulation of small kicks that explains white dwarf kick velocities and the disruption of wide binaries.

  2. The evolutionary state of the red giant star L$_2$ Puppis

    astro-ph.SR 2024-11 conditional novelty 6.0 of 10

    L2 Puppis is more likely a red giant branch star than an AGB star, based on its lack of technetium and its luminosity below the RGB tip.

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