Light Echoes of Protoplanetary Disks

Austin J. King and Benjamin C. Bromley
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Abstract

Light echoes offer a means of studying protoplanetary disks, including their geometry and composition, even when they are not spatially resolved. We present a test of this approach applied specifically to optically thick, geometrically flared disks around active stars. Here we adopt stellar parameters of an active M dwarf to calculate light echoes for disks and rings with radii that would produce time delays consistent with TESS short cadence (about 2 minutes) time bins. Our results show successful fits to disk parameters, highlighting the potential effectiveness of this method in the search for protoplanetary disks.
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原行星盘的光回声
光回波提供了一种研究原行星盘的方法,包括它们的几何形状和组成,即使它们没有空间分辨率。我们对这种方法进行了测试,并将其专门应用于活跃恒星周围光学厚度大、几何形状耀斑的星盘。在这里,我们采用一颗活跃的 M 矮星的恒星参数来计算盘和环的光回波,其半径所产生的时间延迟与 TESS 的短周期(约 2 分钟)时间带一致。我们的结果表明,我们成功地拟合了星盘参数,突出了这种方法在搜索原行星盘方面的潜在有效性。
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