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首页> 外文期刊>Advances in Astronomy >Estimating Finite Source Effects in Microlensing Events due to Free-Floating Planets with the Euclid Survey
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Estimating Finite Source Effects in Microlensing Events due to Free-Floating Planets with the Euclid Survey

机译:用欧几里得测量法估计由于自由漂浮行星造成的微透镜事件中的有限源效应

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摘要

In recent years free-floating planets (FFPs) have drawn a great interest among astrophysicists. Gravitational microlensing is a unique and exclusive method for their investigation which may allow obtaining precious information about their mass and spatial distribution. The planned Euclid space-based observatory will be able to detect a substantial number of microlensing events caused by FFPs towards the Galactic bulge. Making use of a synthetic population algorithm, we investigate the possibility of detecting finite source effects in simulated microlensing events due to FFPs. We find a significant efficiency for finite source effect detection that turns out to be between 20% and 40% for a FFP power law mass function index in the range [0.9, 1.6]. For many of such events it will also be possible to measure the angular Einstein radius and therefore constrain the lens physical parameters. These kinds of observations will also offer a unique possibility to investigate the photosphere and atmosphere of Galactic bulge stars.
机译:近年来,自由漂浮行星(FFP)在天体物理学家中引起了极大兴趣。引力微透镜是一种独特而独特的研究方法,可以获取有关其质量和空间分布的宝贵信息。计划中的欧几里得天基天文台将能够探测到由FFP引向银河凸起的大量微透镜事件。利用合成人口算法,我们调查了在由FFP引起的模拟微透镜事件中检测有限源效应的可能性。我们发现有限源效应检测的显着效率对于FFP幂律质量函数指数在[0.9,1.6]范围内发现在20%至40%之间。对于许多这样的事件,也有可能测量爱因斯坦角半径并因此限制镜片的物理参数。这些观测还将为研究银河膨胀星的光球和大气提供独特的可能性。

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