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首页> 外文期刊>The Astrophysical journal >COUPLED EVOLUTIONS OF THE STELLAR OBLIQUITY, ORBITAL DISTANCE, AND PLANET'S RADIUS DUE TO THE OHMIC DISSIPATION INDUCED IN A DIAMAGNETIC HOT JUPITER AROUND A MAGNETIC T TAURI STAR
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COUPLED EVOLUTIONS OF THE STELLAR OBLIQUITY, ORBITAL DISTANCE, AND PLANET'S RADIUS DUE TO THE OHMIC DISSIPATION INDUCED IN A DIAMAGNETIC HOT JUPITER AROUND A MAGNETIC T TAURI STAR

机译:磁T陶里星周围的磁热飞秒引起的消散,导致恒星的圆角,轨道距离和行星半径的耦合演化

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摘要

We revisit the calculation of the ohmic dissipation in a hot Jupiter presented by Laine et?al. by considering more realistic interior structures, stellar obliquity, and the resulting orbital evolution. In this simplified approach, the young hot Jupiter of one Jupiter mass is modeled as a diamagnetic sphere with a finite resistivity, orbiting across tilted stellar magnetic dipole fields in vacuum. Since the induced ohmic dissipation occurs mostly near the planet's surface, we find that the dissipation is unable to significantly expand the young hot Jupiter. Nevertheless, the planet inside a small corotation orbital radius can undergo orbital decay by the dissipation torque and finally overfill its Roche lobe during the T Tauri star phase. The stellar obliquity can evolve significantly if the magnetic dipole is parallel/antiparallel to the stellar spin. Our results are validated by the general torque-dissipation relation in the presence of the stellar obliquity. We also run the fiducial model of Laine et?al. and find that the planet's radius is sustained at a nearly constant value by the ohmic heating, rather than being thermally expanded to the Roche radius as suggested by the authors.
机译:我们重新研究由莱恩等人提出的热木星中的欧姆耗散的计算。通过考虑更现实的内部结构,恒星倾角以及由此产生的轨道演化。在这种简化方法中,一个木星质量的年轻热木星被建模为具有有限电阻率的抗磁球,并在真空中绕过倾斜的恒星磁偶极子场旋转。由于感应欧姆耗散大部分发生在行星表面附近,因此我们发现耗散无法显着扩展年轻的热木星。但是,在同心圆转角半径内的行星可能会由于耗散转矩而经历轨道衰减,并最终在T Tauri星相期间使其Roche叶片过满。如果磁偶极子与恒星自旋平行/反平行,则恒星倾角会显着发展。在存在恒星倾角的情况下,我们的结果通过一般的扭矩耗散关系得到了验证。我们还运行了莱恩等人的基准模型。并发现行星的半径通过欧姆加热保持在几乎恒定的值,而不是像作者建议的那样热膨胀到罗氏半径。

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