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COSMOLOGICAL SHOCK WAVES IN THE LARGE-SCALE STRUCTURE OF THE UNIVERSE: NONGRAVITATIONAL EFFECTS

机译:宇宙大型结构中的宇宙波冲击波:非引力作用

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Cosmological shock waves result from supersonic flow motions induced by hierarchical clustering of nonlinear structures in the universe. These shocks govern the nature of cosmic plasma through thermalization of gas and acceleration of nonthermal, cosmic-ray (CR) particles. We study the statistics and energetics of shocks formed in cos-mological simulations of a concordance ACDM universe, with a special emphasis on the effects of nongravitational processes such as radiative cooling, photoionization/heating, and galactic superwind feedbacks. Adopting an improved model for gas thermalization and CR acceleration efficiencies based on nonlinear diffusive shock acceleration calculations, we then estimate the gas thermal energy and the CR energy dissipated at shocks through the history of the universe. Since shocks can serve as sites for generation of vorticity, we also examine the vorticity that should have been generated mostly at curved shocks in cosmological simulations. We find that the dynamics and energetics of shocks are governed primarily by the gravity of matter, so other nongravitational processes do not significantly affect the global energy dissipation and vorticity generation at cosmological shocks. Our results reinforce scenarios in which the intracluster medium and warm-hot intergalactic medium contain energetically significant populations of nonthermal particles and turbulent flow motions.
机译:宇宙冲击波是由宇宙中非线性结构的层次聚类引起的超音速流动引起的。这些冲击通过气体的热化和加速非热宇宙射线(CR)粒子来控制宇宙等离子体的性质。我们研究协调ACDM宇宙的宇宙学模拟中形成的冲击的统计数据和能量学,特别着重于非重力过程的影响,例如辐射冷却,光电离/加热和银河超风反馈。在非线性扩散冲击加速度计算的基础上,采用改进的气体热化和CR加速效率模型,然后通过宇宙历史估算气体热能和在冲击中耗散的CR能量。由于冲击可以作为产生涡度的场所,因此,我们还检查了宇宙模拟中应该主要在弯曲冲击时产生的涡度。我们发现,冲击的动力和能量主要由物质的引力控制,因此其他非引力过程不会显着影响宇宙冲击时的整体能量耗散和涡度的产生。我们的结果加强了集群内部介质和热热星系间介质包含大量非热粒子和湍流运动的场景。

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