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首页> 外文期刊>The Astrophysical journal >A NEW TYPE OF AMBIGUITY IN THE PLANET AND BINARY INTERPRETATIONS OF CENTRAL PERTURBATIONS OF HIGH-MAGNIFICATION GRAVITATIONAL MICROLENSING EVENTS
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A NEW TYPE OF AMBIGUITY IN THE PLANET AND BINARY INTERPRETATIONS OF CENTRAL PERTURBATIONS OF HIGH-MAGNIFICATION GRAVITATIONAL MICROLENSING EVENTS

机译:行星上的一种新类型的高引力重微活动中心扰动和二元解释。

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High-magnification microlensing events provide an important channel to detect planets. Perturbations near the peak of a high-magnification event can be produced either by a planet or a binary companion. It is known that central perturbations induced by both types of companions can be generally distinguished due to the essentially different magnification pattern around caustics. In this paper, we present a case of central perturbations for which it is difficult to distinguish the planetary and binary interpretations. The peak of a lensing light curve affected by this perturbation appears to be blunt and flat. For a planetary case, this perturbation occurs when the source trajectory passes the negative perturbation region behind the back end of an arrowhead-shaped central caustic. For a binary case, a similar perturbation occurs for a source trajectory passing through the negative perturbation region between two cusps of an astroid-shaped caustic. We demonstrate the degeneracy for two high-magnification events of OGLE-2011-BLG-0526 and OGLE-2011-BLG-0950/MOA-2011-BLG-336. For OGLE-2011-BLG-0526, the χ2 difference between the planetary and binary model is ~3, implying that the degeneracy is very severe. For OGLE-2011-BLG-0950/MOA-2011-BLG-336, the stellar binary model is formally excluded with Δχ2 ~ 105 and the planetary model is preferred. However, it is difficult to claim a planet discovery because systematic residuals of data from the planetary model are larger than the difference between the planetary and binary models. Considering that two events observed during a single season suffer from such a degeneracy, it is expected that central perturbations experiencing this type of degeneracy is common.
机译:高倍微透镜事件提供了探测行星的重要渠道。行星或双星伴星可能会在高倍放大事件的峰值附近产生扰动。众所周知,由于围绕焦散的本质上不同的放大方式,通常可以区分由两种类型的伴生引起的中央扰动。在本文中,我们介绍了一个中心扰动的情况,很难区分行星和二进制解释。受此摄动影响的透镜光曲线的峰似乎钝且平坦。对于行星情况,当源轨迹经过箭头形中心苛性碱后端后面的负扰动区域时,就会发生这种扰动。对于二元情况,对于穿过轨迹的两个源极之间的负扰动区域,源轨迹发生类似的扰动。我们证明了OGLE-2011-BLG-0526和OGLE-2011-BLG-0950 / MOA-2011-BLG-336的两个高放大倍率事件的简并性。对于OGLE-2011-BLG-0526,行星模型与二元模型之间的χ2差异为〜3,这意味着简并性非常严重。对于OGLE-2011-BLG-0950 / MOA-2011-BLG-336,正式用Δχ2〜105排除了恒星二元模型,并且优选行星模型。但是,由于行星模型数据的系统残差大于行星模型与二元模型之间的差,因此很难主张发现行星。考虑到在一个季节中观察到的两个事件都受到这种退化的影响,因此预期发生这种退化的中央扰动是很普遍的。

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