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Hexadecapole Approximation In Planetary Microlensing

机译:行星微透镜中的六面体近似

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摘要

The frequency of microlensing planet detections, particularly in difficult-to-model high-magnification events, is increasing. Their analysis can require tens of thousands of processor hours or more, primarily because of the high density and high precision of measurements whose modeling requires time-consuming finite-source calculations. I show that a large fraction of these measurements, those that lie at least one source diameter from a caustic or the extension from a cusp, can be modeled using a very simple hexadecapole approximation, which is one to several orders of magnitude faster than full-fledged finite-source calculations. Moreover, by restricting the regions that actually require finite-source calculations to a few isolated "caustic features," the hexadecapole approximation will, for the first time, permit the powerful "magnification map" approach to be applied to events for which the planet's orbital motion is important.
机译:微透镜行星检测的频率正在增加,尤其是在难以建模的高放大倍率事件中。他们的分析可能需要数万个处理器小时或更长时间,主要是因为测量的高密度和高精度,其建模需要耗时的有限源计算。我表明,这些测量中的很大一部分(至少是来自苛性碱的直径或来自尖端的延伸)可以使用非常简单的十六极近似进行建模,该近似速度比全十进制快一到几个数量级,成熟的有限源计算。此外,通过将实际需要有限源计算的区域限制为几个孤立的“腐蚀性特征”,十六极近似将首次允许将强大的“放大图”方法应用于行星轨道所发生的事件运动很重要。

著录项

  • 来源
    《The Astrophysical journal》 |2008年第1期|p.1593-1598|共6页
  • 作者

    Andrew Gould;

  • 作者单位

    Department of Astronomy, Ohio State University, 140 West 18th Avenue, Columbus, OH 43210;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 天文学;
  • 关键词

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