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Gentle reenergization of electrons in merging galaxy clusters

机译:合并星系团中电子的柔和能量

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Galaxy clusters are the most massive constituents of the large-scale structure of the universe. Although the hot thermal gas that pervades galaxy clusters is relatively well understood through observations with x-ray satellites, our understanding of the nonthermal part of the intracluster medium (ICM) remains incomplete. With Low-Frequency Array (LOFAR) and Giant Metrewave Radio Telescope (GMRT) observations, we have identified a phenomenon that can be unveiled only at extremely low radio frequencies and offers new insights into the nonthermal component. We propose that the interplay between radio-emitting plasma and the perturbed intracluster medium can gently reenergize relativistic particles initially injected by active galactic nuclei. Sources powered through this mechanism can maintain electrons at higher energies than radiative aging would allow. If this mechanism is common for aged plasma, a population of mildly relativistic electrons can be accumulated inside galaxy clusters providing the seed population for merger-induced reacceleration mechanisms on larger scales such as turbulence and shock waves.
机译:星系团是宇宙大规模结构中最重要的组成部分。尽管通过X射线卫星的观测可以相对较好地理解遍布星系团的热气,但是我们对集群内介质(ICM)非热部分的理解仍然不完整。借助低频阵列(LOFAR)和巨波无线电望远镜(GMRT)的观测,我们发现了仅在极低的无线电频率下才能揭示的现象,并为非热分量提供了新的见解。我们提出,放射发射等离子体和被扰动的簇内介质之间的相互作用可以使最初由活性银河核注入的相对论粒子缓慢地恢复活力。通过这种机制提供动力的源可以将电子保持在比辐射老化所允许的更高的能量下。如果这种机制在老化的血浆中很常见,那么轻度相对论的电子群体就会聚集在星系团内部,从而为诸如湍流和冲击波之类的合并诱发的加速机制提供种子种群。

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