Status Report

Planets spinning up their host stars: a twist on the age-activity relationship

By SpaceRef Editor
September 26, 2013
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K. Poppenhaeger, S. J. Wolk

(Submitted on 24 Sep 2013)

It is a long-standing question in exoplanet research if Hot Jupiters can influence the magnetic activity of their host stars. While cool stars usually spin down with age and become inactive, an input of angular momentum through tidal interaction, as seen for example in close binaries, can preserve high activity levels over time. This may also be the case for cool stars hosting a Hot Jupiter. However, selection effects from planet detection methods often dominate the activity levels seen in samples of exoplanet host stars, and planet-induced, systematically enhanced stellar activity has not been detected unambiguously so far. We have developed an approach to identify planet-induced stellar spin-up avoiding the selection biases from planet detection, by using visual proper motion binaries in which only one of the stars possesses a Hot Jupiter. This approach immediately rids one of the ambiguities of detection biases: with two co-eval stars, the second star acts as a negative control. We present results from our ongoing observational campaign at X-ray wavelengths and in the optical, and present several outstanding systems which display significant age/activity discrepancies presumably caused by their Hot Jupiters.

Comments: 4 pages; to be published in the Proceedings of IAUS 302: Magnetic Fields Throughout Stellar Evolution

Subjects: Solar and Stellar Astrophysics (astro-ph.SR); High Energy Astrophysical Phenomena (astro-ph.HE)

Cite as: arXiv:1309.6356 [astro-ph.SR]

(or arXiv:1309.6356v1 [astro-ph.SR] for this version) Submission history From: Katja Poppenhaeger [v1] Tue, 24 Sep 2013 21:42:49 GMT (119kb,D) 

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