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首页> 外文期刊>The Astrophysical journal >FIRST OBSERVATION OF PARALLAX IN A GRAVITATIONAL MICROLENSING EVENT
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FIRST OBSERVATION OF PARALLAX IN A GRAVITATIONAL MICROLENSING EVENT

机译:引力微透镜事件中视差的首次观察

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We present the first detection of parallax effects in a gravitational microlensing event. Parallax in a gravitational microlensing event observed only from the Earth appears as a distortion of the (otherwise symmetrical) light curve arising from the motion of the Earth around the Sun. This distortion can be detected if the event duration is not much less than a year and if the projected velocity of the lens is not much larger than the orbital velocity of the Earth about the Sun. The event presented here has a duration (or Einstein diameter crossing time) of t = 220 days and clearly shows the distortion resulting from the Earth's motion. We find that the projected velocity of the lens is v = 75 ± 5 km s~(-1) at an angle of 28° ± 4° from the direction of increasing galactic longitude, as expected for a lens in the galactic disk. A likelihood analysis of this event yields estimates of the distance to and mass of the lens: D_(lens) = 1.7_(-0.7)~(+1.1) kpc and M = 1.3_(-0.6)~(+1.3) solar mass. This suggests that the lens is a remnant such as a white dwarf or neutron star. It is possible, though less likely, that the lens is a main-sequence star. If so, we can add our upper limit on the observed flux from the lens to the analysis. This modifies the estimates to D_(lens) = 2.8_(-0.6)~(+1.1) kpc and M = 0.6_(-0.2)~(+0.4) solar mass.
机译:我们提出了在重力微透镜事件中视差效果的首次检测。仅从地球观察到的引力微透镜事件中的视差表现为地球绕太阳运动引起的(否则对称)光曲线的扭曲。如果事件持续时间不小于一年,并且镜头的投影速度不大于地球绕太阳的轨道速度,则可以检测到这种变形。此处介绍的事件的持续时间(或爱因斯坦直径穿越时间)为t = 220天,并且清楚地显示了地球运动导致的变形。我们发现,与银河系盘中的透镜所期望的一样,在与银河经度增加方向成28°±4°角的情况下,透镜的投影速度为v = 75±5 km s〜(-1)。对该事件的可能性分析可得出距透镜的距离和质量的估计值:D_(lens)= 1.7 _(-0.7)〜(+1.1)kpc和M = 1.3 _(-0.6)〜(+1.3)太阳质量这表明透镜是残余物,例如白矮星或中子星。尽管不太可能,但镜头可能是主序星。如果是这样,我们可以在从透镜到分析的观察通量上加上上限。这将估计值修改为D_(lens)= 2.8 _(-0.6)〜(+1.1)kpc和M = 0.6 _(-0.2)〜(+0.4)太阳质量。

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