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Phase Functions and Light Curves of Wide Separation Extrasolar Giant Planets

机译:宽分离太阳系超大行星的相位函数和光曲线

摘要

We calculate self-consistent extrasolar giant planet (EGP) phase functions and light curves for orbital distances ranging from 0.2 AU to 15 AU. We explore the dependence on wavelength, cloud condensation, and Keplerian orbital elements. We find that the light curves of EGPs depend strongly on wavelength, the presence of clouds, and cloud particle sizes. Furthermore, the optical and infrared colors of most EGPs are phase-dependent, tending to be reddest at crescent phases in $V-R$ and $R-I$. Assuming circular orbits, we find that at optical wavelengths most EGPs are 3 to 4 times brighter near full phase than near greatest elongation for highly-inclined (i.e., close to edge-on) orbits. Furthermore, we show that the planet/star flux ratios depend strongly on the Keplerian elements of the orbit, particularly inclination and eccentricity. Given a sufficiently eccentric orbit, an EGP's atmosphere may make periodic transitions from cloudy to cloud-free, an effect that may be reflected in the shape and magnitude of the planet's light curve. Such elliptical orbits also introduce an offset between the time of the planet's light curve maximum and the time of full planetary phase, and for some sets of orbital parameters, this light curve maximum can be a steeply increasing function of eccentricity. We investigate the detectability of EGPs by proposed space-based direct-imaging instruments.
机译:我们计算轨道距离范围为0.2 AU到15 AU的自洽太阳系外行星(EGP)相函数和光曲线。我们探索对波长,云凝结和开普勒轨道元素的依赖性。我们发现,EGP的光曲线在很大程度上取决于波长,云的存在和云的粒径。此外,大多数EGP的光学和红外颜色取决于相位,在$ V-R $和$ R-I $的新月相中趋于最红。假设是圆形轨道,我们发现在全波长下,大多数EGP在全相位附近的亮度要比高度倾斜(即接近边缘发射)的轨道的最大伸长率的亮度高3至4倍。此外,我们证明了行星/恒星的通量比在很大程度上取决于轨道的开普勒元素,尤其是倾角和偏心率。给定足够偏心的轨道,EGP的大气层可能会从阴天到无云进行周期性过渡,这种影响可能会反映在行星光曲线的形状和大小上。这种椭圆形轨道还在行星的最大光曲线时间和整个行星相位的时间之间引入了偏移,并且对于某些轨道参数集,该最大光曲线可能是偏心率的急剧增加的函数。我们通过提出的基于空间的直接成像仪器调查EGP的可检测性。

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