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High energy diffuse gamma-ray emission of the galactic disk and galactic cosmic-ray spectra

机译:银河盘的高能扩散伽马射线发射和银河宇宙射线光谱

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摘要

Observations of diffuse Galactic gamma-ray spectrum by the EGRET instrument reveal an excess above similar to 1 GeV over the expected gamma-ray spectrum calculated under the assumption that the locally observed cosmic-ray (CR) spectra represent the galactic CR spectra. Assuming that Galactic CRs of energy below similar to 100 TeV are accelerated by supernova remnant (SNR) shock waves and that the shock compression ratio is SNR age dependent, the average source injection spectra from an ensemble of SNRs is calculated both in the inner (330 degrees < l < 30 degrees) and outer (30 degrees < l < 330 degrees) regions of the galaxy. The calculation considers the SNR age distribution in the galaxy. Injecting these spectra in the galaxy and using a 3-D convection-diffusion equation, the CR electrons and protons spectra in the two galactic regions are obtained and their spectra in the galactic disk are found to be flatter than the observed CR spectra. The diffuse gamma-ray spectrum produced by the interaction of these galactic CRs with the ISM and ISRFs is compared with the experimental data in both the galactic regions. Furthermore, the steepening of the observed local CR spectra from the galactic disk CR spectra are discussed by propagating local CRs having a source spectrum derived using local SNR age distribution (SNRs located within 1.5 kpc from the Sun), for a diffusion coefficient D-0 similar to 0.3 x 10(27) cm(2) s(-1) in the local region which is much less than the typical value in the galaxy D-0 similar to (110) x 10(28) cm(2) s(-1). The results obtained in this paper support the SNR origin of galactic CRs. (c) 2006 Elsevier B.V. All rights reserved.
机译:通过EGRET仪器对银河漫射伽马射线光谱的观察表明,在假设本地观测到的宇宙射线(CR)光谱代表银河CR光谱的假设下计算出的预期伽马射线光谱上,有超过1 GeV的过量。假设超新星残留(SNR)冲击波会加速低于100 TeV的能量的银河CR,并且冲击压缩比取决于SNR年龄,因此在内部均计算了SNR集合的平均源注入光谱(330)度

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