论文标题

来自Mathematica工具的系外行星半径差距的新观点和状态的可视化水方程

New Perspectives on the Exoplanet Radius Gap from a Mathematica Tool and Visualized Water Equation of State

论文作者

Zeng, Li, Jacobsen, Stein B., Hyung, Eugenia, Levi, Amit, Nava, Chantanelle, Kirk, James, Piaulet, Caroline, Lacedelli, Gaia, Sasselov, Dimitar D., Petaev, Michail I., Stewart, Sarah T., Alam, Munazza K., López-Morales, Mercedes, Damasso, Mario, Latham, David W.

论文摘要

通过开普勒和苔丝任务及其相关地面的随访获得的最新天文观测表明,大量的系外行星,地球和海王星之间的大小中间。在地球大小的两倍(称为系外行星半径间隙或半径谷)的两倍处,已经确定了行星的发生率低。我们在Mathematica绘图工具的帮助下,在多维参数空间中操纵系外行星数据的能力,并借助温度密度图和入学压力图中的状态水方程,在Mathematica绘图工具中探索了这一差距的几何形状。我们表明,半径谷可以通过较小的,主要是岩石行星和较大的行星之间的组成差来解释,这些行星表现出更大的组成多样性,包括宇宙冰(水,氨,甲烷)和气态信封。特别是,在较大的行星中,当从行星平衡温度的角度看,热的行星与没有明显气体信封的冰的主导构图一致,而冷的构成则具有更多不同的组合物,包括各种气态信封。

Recent astronomical observations obtained with the Kepler and TESS missions and their related ground-based follow-ups revealed an abundance of exoplanets with a size intermediate between Earth and Neptune. A low occurrence rate of planets has been identified at around twice the size of Earth, known as the exoplanet radius gap or radius valley. We explore the geometry of this gap in the mass-radius diagram, with the help of a Mathematica plotting tool developed with the capability of manipulating exoplanet data in multidimensional parameter space, and with the help of visualized water equations of state in the temperature-density graph and the entropy-pressure graph. We show that the radius valley can be explained by a compositional difference between smaller, predominantly rocky planets and larger planets that exhibit greater compositional diversity including cosmic ices (water, ammonia, methane) and gaseous envelopes. In particular, among the larger planets, when viewed from the perspective of planet equilibrium temperature, the hot ones are consistent with ice-dominated composition without significant gaseous envelopes, while the cold ones have more diverse compositions, including various amounts of gaseous envelopes.

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