论文标题

表征具有圆周环的系外行星的传输光谱的框架

A Framework for Characterizing Transmission Spectra of Exoplanets with Circumplanetary Rings

论文作者

Ohno, Kazumasa, Fortney, Jonathan J.

论文摘要

最近的观察结果表明,几个极低密度的系外行星表现出无特征的传输光谱。虽然大气气溶胶是低密度和无特征光谱的一个有前途的解释,但还有另一种有吸引力的可能性:存在绕开圈环。先前的研究表明,环引起异常大的透射半径。然而,它仍然鲜为人知,环如何影响传输频谱。在这里,我们提供了一个框架来表征环形球星的传输光谱。我们开发了一个分析处方,以任意查看几何形状的传​​输光谱中包括环。我们还建立了一个简单的后处理模型,该模型可以包括环对预先计算的无环光谱的影响。该环使传输光谱平移了多种观看几何形状,与极低密度系外行星的无特征光谱一致。 JWST在更长的波长下进行的近事实观察将能够区分气溶胶和环形场景。我们还发现,如果戒指的光学深度围绕统一,岩石环可能会导致$ \ sim $ 10 $μ$ m的硅酸盐功能。因此,如果检测到环的光谱特征,将对系外环的物理特性产生严格的约束。我们还讨论了戒指的稳定性,并建议只有在$ \ lyssim $ 300 k的平衡温度下,该环的年龄与Kepler Planets相当。这可能表明开普勒样品中厚环的内在缺陷,除非环比土星建议的行星年轻得多。

Recent observations revealed that several extremely low-density exoplanets show featureless transmission spectra. While atmospheric aerosols are a promising explanation for both the low density and featureless spectra, there is another attractive possibility: the presence of circumplanetary rings. Previous studies suggested that rings cause anomalously large transit radii. However, it remains poorly understood how rings affect the transmission spectrum. Here, we provide a framework to characterize the transmission spectra of ringed exoplanets. We develop an analytical prescription to include rings in the transmission spectra for arbitrarily viewing geometries. We also establish a simple post-processing model that can include the ring's effects on precomputed ring-free spectra. The ring flattens the transmission spectrum for a wide range of viewing geometries, consistent with the featureless spectra of extremely low-density exoplanets. Near-future observations by JWST at longer wavelengths would be able to distinguish the aerosol and ring scenarios. We also find that rocky rings might cause a silicate feature at $\sim$10 $μ$m if the ring's optical depth is around unity. Thus, the ring's spectral features, if detected, would provide tight constrains on the physical properties of exoplanetary rings. We also discuss the ring's stability and suggest that thick rings are sustainable only at the equilibrium temperature of $\lesssim$300 K for the ring's age comparable to Kepler planets. This might indicate the intrinsic deficit of thick rings in the Kepler samples, unless rings are much younger than the planets as suggested for Saturn.

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