论文标题
使用\ textit {Nancy Grace Roman Space TeleScope}揭示银河系凸起中的短期系外行星和棕色矮人}
Revealing Short-period Exoplanets and Brown Dwarfs in the Galactic Bulge using the Microlensing Xallarap Effect with the \textit{Nancy Grace Roman Space Telescope}
论文作者
论文摘要
\ textIt {Nancy Grace Roman Space望远镜}(\ TextIt {Roman})将提供大量的微透镜光曲线,比正在进行的基于地面的观测值更好。这样的光曲线将使我们能够观察到以前难以检测的高阶微晶效应。在本文中,我们研究了使用源星的轨道运动(所谓的Xallarap效果)在源系统中检测和表征源系统中的短期行星和棕色矮人(BDS)的潜力。我们通过分析使用Fisher矩阵分析来分析估计Xallarap参数的测量不确定性。我们表明,\ textIt {roman}银河系外行星调查(RGE)可以检测质量下降到0.5 $ m _ {\ rm jup} $的温暖木星,并通过Xallarap效应来检测30天的轨道周期。假设\ citet {Cumming+2008}具有行星频率函数,我们发现\ textit {roman}将检测$ \ sim10 $热和温暖的木星,以及在微透镜调查期间微粘的源星周围的$ \ sim30 $近距离bds。这些检测可能伴随着伴侣质量和轨道元素的测量,这将有助于研究银河凸起中近距离行星和BD种群的物理性质。
The \textit{Nancy Grace Roman Space Telescope} (\textit{ Roman}) will provide an enormous number of microlensing light curves with much better photometric precisions than ongoing ground-based observations. Such light curves will enable us to observe high-order microlensing effects which have been previously difficult to detect. In this paper, we investigate \textit{Roman}'s potential to detect and characterize short-period planets and brown dwarfs (BDs) in source systems using the orbital motion of source stars, the so-called xallarap effect. We analytically estimate the measurement uncertainties of xallarap parameters using the Fisher matrix analysis. We show that the \textit{Roman} Galactic Exoplanet Survey (RGES) can detect warm Jupiters with masses down to 0.5 $M_{\rm Jup}$ and orbital period of 30 days via the xallarap effect. Assuming a planetary frequency function from \citet{Cumming+2008}, we find \textit{Roman} will detect $\sim10$ hot and warm Jupiters and $\sim30$ close-in BDs around microlensed source stars during the microlensing survey. These detections are likely to be accompanied by the measurements of the companion's masses and orbital elements, which will aid in the study of the physical properties for close-in planet and BD populations in the Galactic bulge.