论文标题
簇内培养基的血浆物理学
Plasma physics of the intracluster medium
论文作者
论文摘要
本章提供了有关等离子体物理学的某些方面的简要教程,这些方面对于理解群内培养基(ICM)的动力学和能量学至关重要。该教程分为两个部分:一个专注于热等离子体成分的部分 - 其稳定性,粘度,电导率以及通过湍流和其他血浆过程将磁场放大到动态强度的能力;并着重于被称为宇宙射线的非热颗粒种群 - 它们在整个群集体积中的加速,重新加速和运输。在整个叙述中都编织了观察性环境,从对集体内磁场的强度和几何形状的约束以及ICM的有效粘度到可以测试粒子加速理论的无线电晕,无线电遗物和集群冲击的示例。未来X射线任务探测群内湍流并发现小规模等离子体物理学的影响的希望,再加上同步发射的敏感,高分辨率的无线电观察结果,这些观察值揭示了膨胀磁场和颗粒磁场机制的特性,可能会建立了基金会,这可能是依次的实验室。热,稀的等离子体。
This Chapter provides a brief tutorial on some aspects of plasma physics that are fundamental to understanding the dynamics and energetics of the intracluster medium (ICM). The tutorial is split into two parts: one that focuses on the thermal plasma component -- its stability, viscosity, conductivity, and ability to amplify magnetic fields to dynamical strengths via turbulence and other plasma processes; and one that focuses on the non-thermal population of charged particles known as cosmic rays -- their acceleration, re-acceleration, and transport throughout the cluster volume. Observational context is woven throughout the narrative, from constraints on the strength and geometry of intracluster magnetic fields and the effective viscosity of the ICM, to examples of radio halos, radio relics, and cluster shocks that can test theories of particle acceleration. The promise of future X-ray missions to probe intracluster turbulence and discover the impact of small-scale plasma physics, coupled with sensitive, high-resolution radio observations of synchrotron-emitting plasma that reveal the properties of intracluster magnetic fields and particle-acceleration mechanisms, are likely to establish galaxy clusters as the premier cosmic laboratories for deciphering the fundamental physics of hot, dilute plasmas.