论文标题
使用雨伞采样对放牧转移的准确建模
Accurate modeling of grazing transits using umbrella sampling
论文作者
论文摘要
放牧过渡为系外行星的统计研究带来了一个特殊的问题。即使放牧的行星轨道很少见(由于几何选择效果),但对于许多低至中等的信噪比,后验分布的很大一部分仍与放牧的几何形状一致。因此,即使在行星实际上没有放牧轨迹的情况下,无法准确模拟放牧的过渡也可能导致偏见的推论。随着恒星特征的最新进展,许多科学应用的限制因素现在是可用过境本身的质量,因此重新审视过境拟合问题的时间已经成熟了。在本文中,我们使用雨伞采样的新应用和几何学参数基础对超球星进行了建模,从而最大程度地减少了过境参数之间的协方差。我们的技术将过境拟合问题分解为独立的蒙特卡洛采样,用于参数空间的放牧,非放牧和过渡区域,然后我们使用强大的加权方案将其重组为单个关节后验概率分布。我们的方法可以在微不足道上平行,因此不需要增加计算所需的壁时钟时间。最重要的是,我们的方法对放牧和非放牧轨道产生的外部外球星特性的准确估计值,比许多常见的星形行星构型的标准方法产生更健壮的结果。
Grazing transits present a special problem for statistical studies of exoplanets. Even though grazing planetary orbits are rare (due to geometric selection effects), for many low to moderate signal-to-noise cases, a significant fraction of the posterior distribution is nonetheless consistent with a grazing geometry. A failure to accurately model grazing transits can therefore lead to biased inferences even for cases where the planet is not actually on a grazing trajectory. With recent advances in stellar characterization, the limiting factor for many scientific applications is now the quality of available transit fits themselves, and so the time is ripe to revisit the transit fitting problem. In this paper, we model exoplanet transits using a novel application of umbrella sampling and a geometry-dependent parameter basis that minimizes covariances between transit parameters. Our technique splits the transit fitting problem into independent Monte Carlo sampling runs for the grazing, non-grazing, and transition regions of the parameter space, which we then recombine into a single joint posterior probability distribution using a robust weighting scheme. Our method can be trivially parallelized and so requires no increase in the wall clock time needed for computations. Most importantly, our method produces accurate estimates of exoplanet properties for both grazing and non-grazing orbits, yielding more robust results than standard methods for many common star-planet configurations.