高红移GeV光谱中伽马射线衰减的建模

R. Gilmore, P. Madau, J. Primack, R. Somerville
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引用次数: 7

摘要

我们提出了宇宙紫外背景光的两种模型,并计算了GeV伽玛射线的红移9的不透明度。背景的贡献者包括2种可能的类星体发射率,以及由最近的结构形成半解析模型(SAM)确定的恒星形成星系的输出。在这项工作中使用的SAM是基于ΛCDM宇宙结构的分层构建,并且在再现各种观测参数方面非常成功。在1里德伯能量以上,电离辐射受到IGM的再处理,我们使用我们的辐射传输代码CUBA进行处理。选择z = 2.3以上的两种类星体发射率模型来匹配利用通量衰减分析观测到的电离率和视线接近效应的较高值。我们还研究了z>5时平坦恒星形成速率密度的可能性。我们得出结论,Fermi (GLAST)和下一代g…
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling Gamma‐Ray Attenuation in High Redshift GeV Spectra
We present two models for the cosmological UV background light, and calculate the opacity of GeV gamma—rays out to redshift 9. The contributors to the background include 2 possible quasar emissivities, and output from star—forming galaxies as determined by recent a semi—analytic model (SAM) of structure formation. The SAM used in this work is based upon a hierarchical build‐up of structure in a ΛCDM universe and is highly successful in reproducing a variety of observational parameters. Above 1 Rydberg energy, ionizing radiation is subject to reprocessing by the IGM, which we treat using our radiative transfer code, CUBA. The two models for quasar emissivity differing above z = 2.3 are chosen to match the ionization rates observed using flux decrement analysis and the higher values of the line‐of‐sight proximity effect. We also investigate the possibility of aflat star formation rate density at z>5. We conclude that observations of gamma—rays from 10 to 100 GeV by Fermi (GLAST) and the next generation of g...
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