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Estimating the Magnetic Field Strength in Hot Jupiters

机译:估算热摩像丝仪中的磁场强度

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A large fraction of known Jupiter-like exoplanets are inflated as compared to Jupiter. These “hot” Jupiters orbit close to their parent star and are bombarded with intense starlight. Many theories have been proposed to explain their radius inflation and several suggest that a small fraction of the incident starlight is injected into the planetary interior, which helps to puff up the planet. How will such energy injection affect the planetary dynamo? In this Letter, we estimate the surface magnetic field strength of hot Jupiters using scaling arguments that relate energy available in planetary interiors to the dynamo-generated magnetic fields. We find that if we take into account the energy injected in the planetary interior that is sufficient to inflate hot Jupiters to observed radii, then the resulting dynamo should be able generate magnetic fields that are more than an order of magnitude stronger than the Jovian values. Our analysis highlights the potential fundamental role of the stellar light in setting the field strength in hot Jupiters.
机译:与木星相比,大部分已知的Jupiter样外产网是膨胀的。这些“热的”斗篷轨道靠近他们的父母明星,并被激烈的星光轰炸。已经提出了许多理论来解释他们的半径通胀,有几个建议将事件星光的一小部分注射到行星内部,这有助于淡化行星。这种能量注入将如何影响行星发电机?在这封信中,我们使用将行星室内内饰中可用的能量与发电机产生的磁场相关的缩放参数来估计热混凝箱的表面磁场强度。我们发现,如果我们考虑到在行星内部注入的能量足以将热的Jupiters膨胀到观察到的半径,那么所得到的发电机应该能够产生比Jovian值更强的数量级的磁场。我们的分析突出了恒星光在炎热的摩像丝者中的田间力量方面的潜在基本作用。

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