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An optimized photoelectron track reconstruction method for photoelectric X-ray polarimeters

机译:光电X射线旋光计的一种优化的电子轨迹重构方法

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摘要

We present a data processing algorithm for angular reconstruction and event selection applied to 2-D photoelectron track images from X-ray polarimeters. The method reconstructs the initial emission angle of a photoelectron from the initial portion of the track, which is obtained by continuously cutting a track until the image moments or number of pixels fall below tunable thresholds. In addition, event selection which rejects round tracks quantified with eccentricity and circularity is performed so that polarimetry sensitivity considering a trade-off between the modulation factor and signal acceptance is maximized. The modulation factors with applying track selection are 26.6 ± 0.4, 46.1 ± 0.4, 62.3 ± 0.4, and 61.8 ± 0.3% at 2.7, 4.5, 6.4, and 8.0 keV, respectively, using the same data previously analyzed by Iwakiri et al. (2016), where the corresponding numbers are 26.9±0.4,43.4±0.4, 54.4±0.3, and 59.1 ± 0.3%. The method improves polarimeter sensitivity by 5%-10% at the high energy end of the band previously presented (Iwakiri et al. 2016).
机译:我们提出了一种用于角度重构和事件选择的数据处理算法,该算法适用于来自X射线旋光仪的二维光电子轨道图像。该方法从轨道的初始部分重构光电子的初始发射角,该光电子的初始发射角是通过连续切割轨道直到图像矩或像素数降到可调阈值以下而获得的。此外,执行拒绝选择偏心度和圆度量化的圆形轨迹的事件选择,从而使考虑调制因子和信号接收之间的折衷的极化灵敏度最大化。使用先前由Iwakiri等人分析的相同数据,在选择音轨时的调制因子分别为2.7、4.5、6.4和8.0 keV时为26.6±0.4、46.1±0.4、62.3±0.4和61.8±0.3%。 (2016),其中相应的数字为26.9±0.4、43.4±0.4、54.4±0.3和59.1±0.3%。该方法在先前介绍的频带的高能量端将偏振计灵敏度提高了5%-10%(Iwakiri等人2016)。

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  • 作者单位

    Department of Physical Science, Hiroshima University, 1-3-1 Kagpmfyama, Higashi-Hiroshima, Hiroshima, 739-8526, Japan,Core Research for Energetic Universe, Hiroshima University, 1-3-1, Kagamiyama, Higashi-Hiroshima, Hiroshima, 739-8526, Japan;

    NASA Goddard Space Flight Center, Greenbelt, MD 20771, USA,Rock Creek Scientific, 1400 East-West Hwy, Silver Spring, MD, 20910, USA;

    The Hakubi Center for Advanced Research, Kyoto University, Kyoto, 606-8302, Japan;

    Department of Physical Science, Hiroshima University, 1-3-1 Kagpmfyama, Higashi-Hiroshima, Hiroshima, 739-8526, Japan,Core Research for Energetic Universe, Hiroshima University, 1-3-1, Kagamiyama, Higashi-Hiroshima, Hiroshima, 739-8526, Japan,Hiroshima Astrophyskal Science Center, Hiroshima University, 1-3-1 Kagamiyama, Higashi-Hiroshima, Hiroshima, 739-8526, Japan;

    RIKEN Nishina Center, 2-1 Hirosawa, Wako, Saitama, 351-0198, Japan;

    NASA Goddard Space Flight Center, Greenbelt, MD 20771, USA;

    RIKEN MAXI team, 2-1 Hirosawa, Wako, Saitama, 351-0198, Japan;

    NASA Goddard Space Flight Center, Greenbelt, MD 20771, USA;

    University of Iowa, Iowa City, IA, 52242, USA;

    University of Iowa, Iowa City, IA, 52242, USA;

    Department of Physical Science, Hiroshima University, 1-3-1 Kagpmfyama, Higashi-Hiroshima, Hiroshima, 739-8526, Japan,Core Research for Energetic Universe, Hiroshima University, 1-3-1, Kagamiyama, Higashi-Hiroshima, Hiroshima, 739-8526, Japan,Hiroshima Astrophyskal Science Center, Hiroshima University, 1-3-1 Kagamiyama, Higashi-Hiroshima, Hiroshima, 739-8526, Japan;

    RIKEN Nishina Center, 2-1 Hirosawa, Wako, Saitama, 351-0198, Japan;

    RIKEN Nishina Center, 2-1 Hirosawa, Wako, Saitama, 351-0198, Japan;

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  • 正文语种 eng
  • 中图分类
  • 关键词

    X-ray; Polarimetry; Photoelectric polarimeter; Time projection chamber; Tracking algorithm;

    机译:X射线极化法;光电旋光仪;时间投影室;追踪算法;

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