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首页> 外文期刊>The Astrophysical journal >CHARACTERIZING LOW-MASS BINARIES FROM OBSERVATION OF LONG-TIMESCALE CAUSTIC-CROSSING GRAVITATIONAL MICROLENSING EVENTS
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CHARACTERIZING LOW-MASS BINARIES FROM OBSERVATION OF LONG-TIMESCALE CAUSTIC-CROSSING GRAVITATIONAL MICROLENSING EVENTS

机译:通过长时间穿越质点引力微透镜事件表征低质量二元数

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摘要

Despite the astrophysical importance of binary star systems, detections are limited to those located in small ranges of separations, distances, and masses and thus it is necessary to use a variety of observational techniques for a complete view of stellar multiplicity across a broad range of physical parameters. In this paper, we report the detections and measurements of two binaries discovered from observations of microlensing events MOA-2011-BLG-090 and OGLE-2011-BLG-0417. Determinations of the binary masses are possible by simultaneously measuring the Einstein radius and the lens parallax. The measured masses of the binary components are 0.43 M ☉ and 0.39 M ☉ for MOA-2011-BLG-090 and 0.57 M ☉ and 0.17 M ☉ for OGLE-2011-BLG-0417 and thus both lens components of MOA-2011-BLG-090 and one component of OGLE-2011-BLG-0417 are M dwarfs, demonstrating the usefulness of microlensing in detecting binaries composed of low-mass components. From modeling of the light curves considering full Keplerian motion of the lens, we also measure the orbital parameters of the binaries. The blended light of OGLE-2011-BLG-0417 comes very likely from the lens itself, making it possible to check the microlensing orbital solution by follow-up radial-velocity observation. For both events, the caustic-crossing parts of the light curves, which are critical for determining the physical lens parameters, were resolved by high-cadence survey observations and thus it is expected that the number of microlensing binaries with measured physical parameters will increase in the future.
机译:尽管双星系统具有天体物理学的重要性,但探测仅限于位于较小间隔,距离和质量范围内的探测,因此有必要使用各种观测技术来全面观测大范围物理场中的恒星多重性参数。在本文中,我们报告了从微透镜事件MOA-2011-BLG-090和OGLE-2011-BLG-0417的观测中发现的两个二进制文件的检测和测量。通过同时测量爱因斯坦半径和晶状体视差,可以确定二元质量。对于MOA-2011-BLG-090,二值分量的测量质量为0.43 M☉和0.39 M and;对于OGLE-2011-BLG-0417,二元分量的测量质量为0.57 M☉和0.17 M and,因此,MOA-2011-BLG的两个镜头分量-090和OGLE-2011-BLG-0417的一个组成部分是M型矮星,这表明微透镜在检测由低质量组成部分构成的二进制文件中的有用性。从考虑透镜的完整开普勒运动的光曲线建模,我们还测量了双星的轨道参数。 OGLE-2011-BLG-0417的混合光很可能来自镜头本身,因此可以通过后续的径向速度观察来检查微透镜轨道解。对于这两个事件,光曲线的苛性相交部分对于确定物理透镜参数至关重要,已通过高级调查观察得到解决,因此,预计具有测量的物理参数的微透镜二进制数将增加。未来。
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