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INTERPRETATION OF GRAVITATIONAL MICROLENSING BY BINARY SYSTEMS

机译:重力微透镜的二元体系解释

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The fraction of massive compact halo objects (MACHOs) that may be binary systems is unknown, but there is no a priori reason to assume that it is small. If stellar systems can provide useful guidelines, then the fraction may be close to one-half. It is therefore possible that some of the microlensing events, including both those due to stellar systems and those due to MACHOs, may exhibit the complex light curves associated with binarity. In this work we propose a method to search for evidence of binarity in the microlensing light curves and demonstrate that our approach can be used to extract binary parameters directly from the light curves. The backdrop of our method is the establishment of a library of binary events where the most important features (including the positions, amplitudes, and measures of asymmetry) are stored. This library allows us to identify a relatively small number of candidate events that mimic the main features of any given light curve. These candidate events provide the input for a χ~2 minimization routine which identifies the parameters associated with the best fit. We find that the solutions can be degenerate, with the degeneracy being more pronounced for weak and moderate events. While a densely sampled light curve and good photometry can better constrain the binary parameters, we find that samplings that are well within the reach of the current generation of observational programs should be sufficient to shed light on the issue of what fraction of lensing objects are in binaries and on some of the properties of the binaries themselves.
机译:未知的大型紧凑光环对象(MACHO)的比例可能是未知的,但是没有先验的理由假定它很小。如果恒星系统可以提供有用的指导,则该比例可能接近一半。因此,可能有一些微透镜事件,包括由于恒星系统引起的事件和由于MACHO引起的事件,都可能表现出与二值性相关的复杂光曲线。在这项工作中,我们提出了一种在微透镜光曲线中寻找二值性证据的方法,并证明了我们的方法可以直接从光曲线中提取二进制参数。我们方法的背景是建立二进制事件库,其中存储了最重要的特征(包括位置,幅度和不对称性度量)。该库使我们能够识别相对较少的候选事件,这些事件模仿任何给定光曲线的主要特征。这些候选事件为χ〜2最小化例程提供输入,该例程确定与最佳拟合相关的参数。我们发现解决方案可以退化,对于弱事件和中度事件,退化现象更为明显。虽然密集采样的光曲线和良好的测光法可以更好地约束二进制参数,但我们发现,恰好在当前这一代观测程序的范围内进行的采样应足以阐明透镜物体中所占比例的问题。二进制文件以及二进制文件本身的某些属性。

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