论文标题

散射的光可能揭示出戒指的系外行星的存在

Scattered light may reveal the existence of ringed exoplanets

论文作者

Sucerquia, Mario, Alvarado-Montes, Jaime A., Zuluaga, Jorge I., Montesinos, Matías, Bayo, Amelia

论文摘要

在大量发现的行星中,围绕巨型系外行星(以下称“驱动”)仍然是一种缺失的行星现象。尽管事实上存在大量识别和表征这些偏移的方法,但迄今为止,它们都没有成功。大多数努力都集中在围绕过境系外行星周围产生的光度特征。因此,对于可检测到的签名的目的很少,即非传输环的行星可能会导致由于大气中的散射星光和(假设)环形系统的相当大的表面。偏移产生的额外散射将发生在此处定义为恒星光曲线的“夏至”的轨道位置。在这封信中,我们开发了一个一阶模型,以估计非传输偏移的光度特征,并通过使用当前和将来的设施来预测其可检测性。我们还展示了除了发现本身外,我们的模型如何用于约束行星环系统的轨道和物理参数。

Rings around giant exoplanets (hereafter 'exorings') are still a missing planetary phenomenon among the vast number of discovered planets. Despite the fact there exist a large number of methods for identifying and characterizing these exorings, none of them has been successful to date. Most of those efforts focus on the photometric signatures produced by rings around transiting exoplanets; thus, little interest has been intended for the detectable signatures that non-transiting ringed planets might cause owing to the excess of scattered starlight from both their atmosphere and the considerably large surface of their (hypothetical) rings-system. This extra scattering produced by exorings would occur at an orbital location defined here as the `the summer solstice' of a stellar light curve. In this letter, we develop a first-order model to estimate the photometric signatures of non-transiting exorings and predict their detectability by using present and future facilities. We also show how, besides the discovery itself, our model can be used to constrain orbital and physical parameters of planet-rings systems.

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