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首页> 外文期刊>The Astrophysical journal >DETECTING THE ATTENUATION OF BLAZAR GAMMA-RAY EMISSION BY EXTRAGALACTIC BACKGROUND LIGHT WITH THE GAMMA-RAY LARGE AREA SPACE TELESCOPE
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DETECTING THE ATTENUATION OF BLAZAR GAMMA-RAY EMISSION BY EXTRAGALACTIC BACKGROUND LIGHT WITH THE GAMMA-RAY LARGE AREA SPACE TELESCOPE

机译:用伽马射线大面积空间望远镜探测超大背景射线的衰减对伽玛射线的衰减

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摘要

Gamma rays with energy above 10 GeV interact with optical-UV photons, resulting in pair production. Therefore, a large sample of high-redshift sources of these gamma rays can be used to probe the extragalactic background starlight (EBL) by examining the redshift dependence of the attenuation of the flux above 10 GeV. The Gamma-Ray Large Area Space Telescope (GLAST), the next-generation high-energy gamma-ray telescope, will have the unique capability to detect thousands of gamma-ray blazars to redshifts of at least z = 4, with sufficient angular resolution to allow identification of a large fraction of their optical counterparts. By combining established models of the gamma-ray blazar luminosity function, two different calculations of the high-energy gamma-ray opacity due to EBL absorption, and the expected GLAST instrument performance to produce simulated fluxes and redshifts for the blazars that GLAST would detect, we demonstrate that these gamma-ray blazars have the potential to be a highly effective probe of the optical-UV EBL.
机译:能量高于10 GeV的伽玛射线与光学UV光子相互作用,从而产生光子对。因此,可以通过检查高于10 GeV的通量衰减的红移相关性,使用这些伽玛射线的高红移源的大量样本来探测银河外背景星光(EBL)。下一代高能伽玛射线望远镜伽玛射线大面积空间望远镜(GLAST)将具有独特的功能,能够以足够的角分辨率检测成千上万个伽玛射线易爆物至少发生z = 4的红移。以便识别大部分光学对应物。通过结合已建立的伽马射线Blazar光度函数模型,两种由于EBL吸收引起的高能伽马射线不透明性的计算方法以及预期的GLAST仪器性能,以产生模拟的通量和GLAST探测到的Blazar的红移,我们证明了这些伽玛射线天体有潜力成为光学UV EBL的高效探测器。

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