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Cosmic rays, radio halos and nonthermal X-ray emission in clusters of galaxies

机译:星系团中的宇宙射线,无线电晕和非热X射线发射

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We calculate the flux of radio, hard X-ray and UV radiation from clusters of galaxies as produced by synchrotron emission and Inverse Compton Scattering of electrons generated as secondaries in cosmic ray interactions in the intracluster medium. Both the spatial distribution of cosmic rays due to their diffusion and the spatial distribution of the intracluster gas are taken into account.Our calculations are specifically applied to the case of the Coma cluster. The fluxes and spectra of the radio halo emission and of the hard X-ray excess from Coma can be explained in this model if an average magnetic field B approx 0.1 #mu# G is assumed. However, such a low value for the intracluster magnetic field implies a large cosmic ray energy density which in turn is responsible, through neutral pion decay, for a gamma ray flux above 100 MeV which exceeds the EGRET upper limit. This gamma ray bound can be relaxed if the hard X-ray excess and the radio halo emission from Coma are not due to the same population of electrons.We finally stress the unique role that the new generation gamma ray satellites will play to discriminate among different models for the nonthermal emission in clusters of galaxies.
机译:我们计算了星系团簇中的无线电,硬X射线和UV辐射的通量,这些星团是由同步辐射和电子束的逆康普顿散射产生的,这些电子是在团簇内介质中的宇宙射线相互作用中产生的。考虑了由于它们的扩散而产生的宇宙射线的空间分布以及簇内气体的空间分布。我们的计算专门用于彗星团的情况。如果假定平均磁场B约为0.1#mu#G,则可以在此模型中解释无线电晕发射的通量和光谱以及来自昏迷的硬X射线的通量和光谱。然而,簇内磁场的这种低值意味着大的宇宙射线能量密度,这又通过中性小子衰减导致超过100 MeV的伽马射线通量,该通量超过了EGRET上限。如果过量的硬X射线和彗星的无线电晕发射不是由于相同的电子群引起的,则可以放宽这种伽马射线束缚。我们最后强调,新一代伽玛射线卫星将发挥独特作用来区分不同的星系团中非热辐射的数学模型。

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