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Giant Tidal Tails of Helium Escaping the Hot Jupiter HAT-P-32 b

Authors :
Zhang, Zhoujian
Morley, Caroline V.
Gully-Santiago, Michael
MacLeod, Morgan
Oklopčić, Antonija
Luna, Jessica
Tran, Quang H.
Ninan, Joe P.
Mahadevan, Suvrath
Krolikowski, Daniel M.
Cochran, William D.
Bowler, Brendan P.
Endl, Michael
Stefánsson, Gudmundur
Tofflemire, Benjamin M.
Vanderburg, Andrew
Zeimann, Gregory R.
Publication Year :
2023

Abstract

Capturing planets in the act of losing their atmospheres provides rare opportunities to probe their evolution history. Such analysis has been enabled by observations of the helium triplet at 10833 \AA, but past studies have focused on the narrow time window right around the planet's optical transit. We monitored the hot Jupiter HAT-P-32 b using high-resolution spectroscopy from the Hobby-Eberly Telescope covering the planet's full orbit. We detected helium escaping HAT-P-32 b at a $14\sigma$ significance, with extended leading and trailing tails spanning a projected length over 53 times the planet's radius. These tails are among the largest known structures associated with an exoplanet. We interpret our observations using three-dimensional hydrodynamic simulations, which predict Roche Lobe overflow with extended tails along the planet's orbital path.<br />Comment: Accepted by Science Advances

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.2306.03913
Document Type :
Working Paper