Assessment of a statistical approach towards constraining pulsar geometry via multiband light curve fitting

Tiaan Bezuidenhout, C. Venter, A. Seyffert, A. Harding
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引用次数: 1

Abstract

The Large Area Telescope aboard the Fermi spacecraft has detected more than 200 $\gamma$-ray pulsars since its launch in 2008. By concurrently fitting standard geometric model light curves onto Fermi and radio data, researchers have constrained the inclination and observer angles of a number of pulsars. At first this was done by comparing observed and modelled light curves by eye, and later via statistical approaches. We fit modelled light curves of 16 pulsars to radio and $\gamma$-ray data by optimising a custom test statistic that we have developed for combining light curves across the two wavebands, taking their disparate errors into account. We present geometrical constraints found using this process, and compare them with results found by eye or using other statistical methods.
通过多波段光曲线拟合对脉冲星几何形状约束的统计方法的评估
费米宇宙飞船上的大面积望远镜自2008年发射以来,已经探测到200多颗伽马射线脉冲星。通过同时将标准几何模型光曲线拟合到费米和射电数据上,研究人员已经限制了许多脉冲星的倾角和观测者的角度。起初,这是通过比较肉眼观察到的和模拟的光线曲线来完成的,后来通过统计方法。我们将16颗脉冲星的光曲线模型与射电和伽马射线数据相匹配,优化了我们开发的定制测试统计量,该统计量用于组合两个波段的光曲线,并考虑到它们的不同误差。我们提出了使用该过程发现的几何约束,并将其与眼睛或使用其他统计方法发现的结果进行了比较。
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