Hot Jupiters Are Asynchronous Rotators

被引:0
|
作者
Wazny, Marek [1 ,2 ]
Menou, Kristen [1 ,2 ,3 ,4 ]
机构
[1] Univ Toronto, David A Dunlap Dept Astron & Astrophys, 50 St George St, Toronto, ON M5S 3H4, Canada
[2] Univ Toronto, Dept Phys, 60 St George St, Toronto, ON M5S 1A7, Canada
[3] Univ Toronto Scarborough, Dept Phys & Environm Sci, Phys & Astrophys Grp, 1265 Mil Trail, Toronto, ON M1C 1A4, Canada
[4] CNRS, TOP Team, Observ Cote Azur, Lab Lagrange, Nice, France
基金
加拿大自然科学与工程研究理事会;
关键词
EQUILIBRIUM TIDE THEORY; OHMIC DISSIPATION; RADIUS ANOMALIES; MAGNETIC DRAG; PLANET; ATMOSPHERES; EXOPLANETS; TEMPERATURE; CIRCULATION; CALIBRATION;
D O I
10.3847/2041-8213/ada954
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
Hot Jupiters are typically assumed to be synchronously rotating, from tidal locking. Their thermally driven atmospheric winds experience Lorentz drag on the planetary magnetic field anchored at depth. We find that the magnetic torque does not integrate to zero over the entire atmosphere. The resulting angular momentum feedback on the bulk interior can thus drive the planet away from synchronous rotation. Using a toy tidal-ohmic model and atmospheric general circulation model outputs for HD189733b, HD209458b, and Kepler7b, we establish that off-synchronous rotation can be substantial at tidal-ohmic equilibrium for sufficiently hot and/or magnetized hot Jupiters. Potential consequences of asynchronous rotation for hot Jupiter phenomenology motivate follow-up work on the tidal-ohmic scenario with approaches that go beyond our toy model.
引用
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页数:6
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