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COSMIC RAYS AND RADIO HALOS IN GALAXY CLUSTERS: NEW CONSTRAINTS FROM RADIO OBSERVATIONS

机译:银河团中的宇宙射线和无线电晕:无线电观测的新约束

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摘要

Clusters of galaxies are sites of acceleration of charged particles and sources of nonthermal radiation. We report on new constraints on the population of cosmic rays in the intracluster medium (ICM) obtained via radio observations of a fairly large sample of massive, X-ray-luminous galaxy clusters in the redshift interval 0.2-0.4. The bulk of the observed galaxy clusters does not show any hint of megaparsec-scale synchrotron radio emission at the cluster center (radio halo). We obtained solid upper limits to the diffuse radio emission and discuss their implications for the models for the origin of radio halos. Our measurements allow us to also derive a limit to the content of cosmic-ray protons in the ICM. Assuming spectral indices of these protons δ = 2.1-2.4 and μG level magnetic fields, as from rotation measures, these limits are 1 order of magnitude deeper than present EGRET upper limits, while they are less stringent for steeper spectra and lower magnetic fields.
机译:星系团是带电粒子加速的场所和非热辐射源。我们报告了通过无线电观测在红移间隔0.2-0.4中的大量X射线发光星系星团的大量样本的无线电观测获得的对集群内介质(ICM)中宇宙射线种群的新限制。观察到的大部分星系团簇在团簇中心(无线电晕)都没有兆兆秒级同步加速器辐射的迹象。我们获得了漫射无线电发射的可靠上限,并讨论了它们对无线电晕起源的模型的影响。通过我们的测量,我们还可以得出ICM中宇宙射线质子含量的限制。假设这些质子的光谱指数为δ= 2.1-2.4,μG级磁场,根据旋转测量,这些极限比目前的EGRET上限深1个数量级,而对于陡峭的频谱和较低的磁场则不那么严格。

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