论文标题

一个圆周的灰尘环可以解释10 Myr Young系外行星K2-33b的极端频谱

A Circumplanetary Dust Ring May Explain the Extreme Spectral Slope of the 10 Myr Young Exoplanet K2-33b

论文作者

Ohno, Kazumasa, Thao, Pa Chia, Mann, Andrew W., Fortney, Jonathan J.

论文摘要

年轻的系外行星是大气表征的有吸引力的目标,可以探索行星进化和周围环境的早期阶段。最近对10个MYR Neptune大小的系外行星K2-33B的观察结果表明,该行星的过境深度从光学到近红外波长大大降低。 Thao等。 (2022)提出,厚的行星雾霾和/或恒星斑可能是原因。但是,即使是最合适的模型,也仅几乎无法解释数据。在这里,我们建议特殊的传输频谱可能表明K2-33b具有圆周尘埃,这是木星尘埃的类似物。我们证明,即使戒指的光学深度低至$ \ sim {10}}^{ - 2} $,该环可能会在传输频谱中产生陡峭的斜率。然后,我们对K2-33B应用了一种新型的关节环检索,发现环形场景可以很好地解释观察到的各种可能的环组成的光谱。重要的是,灰尘环还表现出大约$ \ sim $ 10 $ \rmμm$的突出吸收特征,其形状和强度取决于环的组成。因此,JWST-MIRI的未来观察不仅能够测试环假说,而且还可以测试它的确存在,以限制环的组成 - 提供了一个独特的机会,以探索行星系统形成后不久,探索其父行星周围尘埃环的起源。

Young exoplanets are attractive targets for atmospheric characterization to explore the early phase of planetary evolution and the surrounding environment. Recent observations of the 10 Myr young Neptune-sized exoplanet K2-33b revealed that the planet's transit depth drastically decreases from the optical to near-infrared wavelengths. Thao et al. (2022) suggested that a thick planetary haze and/or stellar spots may be the cause; however, even the best-fit model only barely explains the data. Here, we propose that the peculiar transmission spectrum may indicate that K2-33b possess a circumplanetary dust ring, an analog of Jupiter's dust ring. We demonstrate that the ring could produce a steep slope in the transmission spectrum even if its optical depth is as low as $\sim {10}^{-2}$. We then apply a novel joint atmosphere-ring retrieval to K2-33b and find that the ring scenario could well explain the observed spectrum for various possible ring compositions. Importantly, the dust ring also exhibits prominent absorption features of ring particles around $\sim$10 $\rmμm$, whose shape and strength depend on the composition of the ring. Thus, future observations by JWST-MIRI would be able to test not only the ring hypothesis but also, if it indeed exists, to constrain the composition of the ring -- providing a unique opportunity to explore the origins of the dust ring around its parent planet, soon after the planetary system's formation.

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