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Gravitational microlensing I: A unique astrophysical tool

机译:引力微透镜I:独特的天体物理学工具

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In this paper, we review the astrophysical application of gravitational microlensing. After introducing the history of gravitational lensing, we present the key equations and concept of microlensing. The most frequent microlensing events are single-lens events and historically it has been used for searching dark matter in the form of compact astrophysical halo objects in the Galactic halo. We discuss about the degeneracy problem in the parameters of lens and perturbation effects that can partially break the degeneracy between the lens parameters. The rest of paper is about the astrophysical applications of microlensing. One of the important applications is in the stellar physics by probing the surface of source stars in the high magnification microlensing events. The astrometric and polarimetric observations will be complimentary for probing the atmosphere and stellar spots on the surface of source stars. Finally we discuss about the future projects as space-based telescopes for parallax and astrometry observations of microlensing events. With this project, we would expect to produce a complete stellar and remnant mass function and study the structure of Galaxy in term of distribution of stars along our line of sight towards the center of galaxy.
机译:在本文中,我们回顾了引力微透镜在天体的应用。在介绍了引力透镜的历史之后,我们介绍了微透镜的关键方程式和概念。最常见的微透镜事件是单透镜事件,从历史上看,它已用于在银河系光环中以紧凑的天体光环物体的形式搜索暗物质。我们讨论了镜片参数的退化问题和微扰效应,这些问题可能会部分破坏镜片参数之间的退化。本文的其余部分是关于微透镜的天体物理应用。在星体物理学中,重要的应用之一是在高倍微透镜事件中探测源恒星的表面。天体和极化观测将是探测源恒星表面的大气和恒星点的补充。最后,我们将讨论未来的项目,如用于微透镜事件的视差和天文观测的天基望远镜。通过这个项目,我们期望产生一个完整的恒星和剩余质量函数,并根据我们朝向银河系中心的视线中的恒星分布研究银河的结构。

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