首页> 外文期刊>The Astrophysical journal >SPACE-BASED MICROLENS PARALLAX OBSERVATION AS A WAY TO RESOLVE THE SEVERE DEGENERACY BETWEEN MICROLENS-PARALLAX AND LENS-ORBITAL EFFECTS
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SPACE-BASED MICROLENS PARALLAX OBSERVATION AS A WAY TO RESOLVE THE SEVERE DEGENERACY BETWEEN MICROLENS-PARALLAX AND LENS-ORBITAL EFFECTS

机译:基于空间的微透镜视差观察是解决微透镜视差和透镜轨道效应之间严重退化的一种方法

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In this paper, we demonstrate the severity of the degeneracy between the microlens-parallax and lens-orbital effects by presenting the analysis of the gravitational binary-lens event OGLE-2015-BLG-0768. Despite the obvious deviation from the model based on the linear observer motion and the static binary, it is found that the residual can be almost equally well explained by either the parallactic motion of the Earth or the rotation of the binary-lens axis, resulting in the severe degeneracy between the two effects. We show that the degeneracy can be readily resolved with the additional data provided by space-based microlens parallax observations. By enabling us?to distinguish between the two higher-order effects, space-based microlens parallax observations will not only?make it possible to?accurately determine the physical lens parameters but also to further constrain the orbital parameters of binary lenses.
机译:在本文中,我们通过对重力双透镜事件OGLE-2015-BLG-0768进行分析,证明了微透镜视差和透镜轨道效应之间的简并性的严重性。尽管基于线性观测器运动和静态二值运动明显偏离了模型,但发现通过地球的视差运动或二值透镜轴的旋转几乎可以很好地解释残差,从而导致两种影响之间的严重退化。我们表明,简并性可以很容易地通过天基微透镜视差观察提供的额外数据解决。通过使我们能够区分这两种高阶效应,基于空间的微透镜视差观察不仅可以精确确定物理透镜参数,而且可以进一步限制二元透镜的轨道参数。
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