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首页> 外文期刊>The Astrophysical Journal. Letters >Mass-radius relationships for very low mass gaseous planets
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Mass-radius relationships for very low mass gaseous planets

机译:质量非常低的气态行星的质量半径关系

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Recently, the Kepler spacecraft has detected a sizable aggregate of objects, characterized by giant-planet-like radii and modest levels of stellar irradiation. With the exception of a handful of objects, the physical nature, and specifically the average densities, of these bodies remain unknown. Here, we propose that the detected giant planet radii may partially belong to planets somewhat less massive than Uranus and Neptune. Accordingly, in this work, we seek to identify a physically sound upper limit to planetary radii at low masses and moderate equilibrium temperatures. As a guiding example, we analyze the interior structure of the Neptune-mass planet Kepler-30d and show that it is acutely deficient in heavy elements, especially compared with its solar system counterparts. Subsequently, we perform numerical simulations of planetary thermal evolution and in agreement with previous studies, show that generally, 10-20 M ?, multi-billion year old planets, composed of high density cores and extended H/He envelopes can have radii that firmly reside in the giant planet range. We subject our results to stability criteria based on extreme ultraviolet radiation, as well as Roche-lobe overflow driven mass-loss and construct mass-radius relationships for the considered objects. We conclude by discussing observational avenues that may be used to confirm or repudiate the existence of putative low mass, gas-dominated planets.
机译:最近,开普勒航天器已经发现了相当数量的物体,这些物体的特征是像巨行星一样的半径和适度的恒星辐射。除了少数物体外,这些物体的物理性质(尤其是平均密度)仍然未知。在这里,我们建议检测到的巨型行星半径可能部分属于质量略小于天王星和海王星的行星。因此,在这项工作中,我们寻求确定低质量和适度平衡温度下行星半径的物理上合理的上限。作为指导性例子,我们分析了海王星质量的开普勒30d行星的内部结构,并显示出它严重缺乏重元素,特别是与太阳系对应物相比。随后,我们进行了行星热演化的数值模拟,并与先前的研究相一致,表明一般而言,由高密度核和扩展的H / He包络线组成的10-20 M ?、数十亿年的行星的半径可以牢固地确定。居住在巨大的行星范围内。我们将结果置于基于极端紫外线辐射以及罗氏瓣溢出驱动的质量损失的稳定性标准下,并为考虑的对象构建质量半径关系。最后,我们讨论了可用于确认或否定低质量,以气体为主的行星存在的观测途径。

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