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An outer gap model of high-energy emission from rotation-powered pulsars

机译:旋转脉冲星高能发射的外间隙模型

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摘要

We describe a refined calculation of high energy emission from rotation-powered pulsars based on the Outer Gap model of Cheng, Ho \&~Ruderman (1986a,b). We have improved upon previous efforts to model the spectra from these pulsars (e. g. Cheng, et al. 1986b; Ho 1989) by following the variation in particle production and radiation properties with position in the outer gap. Curvature, synchrotron and inverse-Compton scattering fluxes vary significantly over the gap and their interactions {\it via} photon-photon pair production build up the radiating charge populations at varying rates. We have also incorporated an approximate treatment of the transport of particle and photon fluxes between gap emission zones. These effects, along with improved computations of the particle and photon distributions, provide very important modifications of the model gamma-ray flux. In particular, we attempt to make specific predictions of pulse profile shapes and spectral variations as a function of pulse phase and suggest further extensions to the model which may provide accurate computations of the observed high energy emissions.
机译:我们基于Cheng,Ho \&〜Ruderman(1986a,b)的外隙模型描述了旋转动力脉冲星高能量排放的精确计算。通过跟踪粒子产生和辐射特性随外间隙位置的变化,我们已经改进了先前对这些脉冲星的光谱建模的努力(例如,Cheng等,1986b; Ho 1989)。曲率,同步加速器和逆康普顿散射通量在整个间隙上变化很大,并且它们的相互作用通过光子-光子对的产生以不同的速率建立了辐射电荷群。我们还结合了间隙发射区域之间粒子和光子通量传输的近似处理。这些效果以及对粒子和光子分布的改进计算,为模型伽马射线通量提供了非常重要的修改。特别是,我们尝试根据脉冲相位对脉冲轮廓形状和频谱变化进行特定的预测,并建议对该模型进行进一步扩展,从而可以对观测到的高能发射进行精确计算。

著录项

  • 作者

    Chiang, J; Romani, R W;

  • 作者单位
  • 年度 1994
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  • 原文格式 PDF
  • 正文语种 eng
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