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THE FIRST DIRECT DETECTION OF A GRAVITATIONAL μ-LENS TOWARD THE GALACTIC BULGE

机译:引力微透镜向银河凸起的首次直接检测

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摘要

We present a direct detection of the gravitational lens that caused the microlensing event MACHO-95-BLG-37. This is the first fully resolved microlensing system involving a source in the Galactic bulge, and the second such system in general. The lens and source are clearly resolved in images taken with the High Resolution Channel of the Advanced Camera for Surveys on board the Hubble Space Telescope (HST) ~9 yr after the microlensing event. The currently available data are not sufficient for the final, unambiguous identification of the gravitational lens and the microlensed source. While the light-curve models combined with the high-resolution photometry for individual objects indicate that the source is red and the lens is blue, the color-magnitude diagram for the line of sight and the observed proper motions strongly support the opposite case. The first scenario points to a metal-poor lens with mass M ≈ 0.6 M_☉ at the distance D_l ≈ 4 kpc. In the second scenario, the lens could be a main-sequence star with M = 0.8-0.9 M_☉ about halfway to the Galactic bulge or in the foreground disk, depending on the extinction.
机译:我们提出了引起微透镜事件MACHO-95-BLG-37的重力透镜的直接检测。这是第一个完全分解的微透镜系统,涉及银河膨胀中的一个光源,通常是第二个这样的系统。在微透镜事件发生后约9年内,用哈勃太空望远镜(HST)上的高级测量照相机高分辨率通道拍摄的图像中清晰地分辨了镜头和光源。当前可获得的数据不足以对重力透镜和微透镜源进行最终的明确识别。虽然光曲线模型与针对单个对象的高分辨率测光法相结合表明,光源是红色而透镜是蓝色,但视线的色度图和观察到的适当运动强烈支持了相反的情况。第一种情况指向距离为D_l≈4 kpc的质量为M≈0.6M_☉的金属贫乏镜片。在第二种情况下,根据灭绝情况,透镜可能是主序星,M = 0.8-0.9M_☉距银河系隆凸或前景盘约一半。

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