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Expectations on mass determination using astrometric microlensing by Gaia ? ??

机译:通过<斜斜体镜头使用Astrometric微透镜对质量测定的预期 α〜Δ ?? ?? <相关 - 对象对象类型=“tablecds”source-id =“http://cdsarc.u-strasbg.fr/viz-bin/cat/j/aaadea/640/A83 “source-id-type =”url“/>

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Context. Astrometric gravitational microlensing can be used to determine the mass of a single star (the lens) with an accuracy of a few percent. To do so, precise measurements of the angular separations between lens and background star with an accuracy below 1?milli???arcsec at different epochs are needed. Therefore only the most accurate instruments can be used. However, since the timescale is on the order of months to years, the astrometric deflection might be detected by Gaia , even though each star is only observed on a low cadence. Aims. We want to show how accurately Gaia can determine the mass of the lensing star. Methods. Using conservative assumptions based on the results of the second Gaia data release ( Gaia DR2), we simulated the individual Gaia measurements for 501 predicted astrometric microlensing events during the Gaia era (2014.5–2026.5). For this purpose we used the astrometric parameters of Gaia DR2, as well as an approximative mass based on the absolute G magnitude. By fitting the motion of the lens and source simultaneously, we then reconstructed the 11 parameters of the lensing event. For lenses passing by multiple background sources, we also fitted the motion of all background sources and the lens simultaneously. Using a Monte-Carlo simulation we determined the achievable precision of the mass determination. Results. We find that Gaia can detect the astrometric deflection for 114 events. Furthermore, for 13 events Gaia can determine the mass of the lens with a precision better than 15% and for 13?+?21?=?34 events with a precision of 30% or better.
机译:语境。横梁重力微溶剂可用于确定单星(镜片)的质量,精度为几百分点。为此,需要精确测量镜头和背景星之间的角度分离,精度低于1?毫在不同时期的arcsec。因此,只能使用最准确的仪器。然而,由于时间尺度约为几年,即使仅在低音节点上观察到每个星,也可能检测到天体偏转。目标。我们想展示Gaia如何确定镜片星的质量。方法。使用基于第二盖亚数据释放的结果的保守假设(Gaia DR2),我们在盖亚时代(2014.5-2026.5)期间模拟了501个预测的星形微透镜事件的个体GaIa测量。为此目的,我们使用GaIa DR2的天数参数,以及基于绝对G幅度的近似质量。通过同时拟合镜头和源的运动,然后重建镜头事件的11个参数。对于通过多个背景源的镜头,我们还同时拟合了所有背景源和镜头的运动。使用Monte-Carlo仿真,我们确定了群众测定的可实现精度。结果。我们发现Gaia可以检测114个事件的星形偏转。此外,对于13个事件,Gaia可以确定镜片的质量,精度优于15%和13Ω·21?= 34个事件,精度为30%或更高。

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