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Einstein Radii from Binary-Source Lensing Events

机译:Einstein Radii来自二进制源镜头事件

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We show that the Einstein ring radius and transverse speed of a lens projected on the source plane, r_E and v, can be determined from the light curve of a binary-source event, followed by the spectroscopic determination of the orbital elements of the source stars. The determination makes use of the same principle that allows one to measure the Einstein ring radii from finite-source effects. For the case when the orbital period of the source stars is much longer than the Einstein timescale, P t_E, there exists a single twofold degeneracy in determining r_E. However, when P ≤t_E the degeneracy can often be broken by making use of the binary-source system's orbital motion. For ~8/100 of all lensing events with sources V < 20 seen toward the Large Magellanic Cloud (LMC), one can unambiguously determine whether the lenses are Galactic or whether they lie in the LMC itself. In addition, we propose to include eclipsing binaries as sources for gravitational lensing experiments.
机译:我们表明,可以从二元源事件的光曲线确定爱因斯坦环半径和投影在源平面上的透镜的横向速度r_E和v,然后通过光谱确定源恒星的轨道元素。该确定使用了相同的原理,该原理允许人们从有限源效应中测量爱因斯坦环半径。对于源恒星的轨道周期比爱因斯坦时间尺度P t_E长得多的情况,在确定r_E时仅存在两次简并性。但是,当P≤t_E时,通常可以通过利用二进制源系统的轨道运动来破坏简并性。对于朝向大麦哲伦星云(LMC)观察到的所有源V <20的镜头事件,约有8/100,人们可以明确地确定这些镜头是否是银河系或它们是否位于LMC自身中。另外,我们建议将日蚀双星作为引力透镜实验的来源。

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