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RADIAL ALIGNMENT IN SIMULATED CLUSTERS

机译:模拟集群中的径向对齐

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Observational evidence for the radial alignment of satellites with their dark matter host has been accumulating steadily over the past few years. The effect is seen over a wide range of scales, from massive clusters of galaxies down to galaxy-sized systems, yet the underlying physical mechanism has still not been established. To this end, we have carried out a detailed analysis of the shapes and orientations of dark matter substructures in high-resolution ,N-body cosmological simulations. We find a strong tendency for radial alignment of the substructure with its host halo: the distribution of halo major axes is very anisotropic, with the majority pointing toward the center of mass of the host. The alignment peaks once the subhalo has passed the virial radius of the host for the first time, but is not subsequently diluted, even after the halos have gone through as many as four pericentric passages. This evidence points to the existence of a very rapid dynamical mechanism acting on these systems, and we argue that tidal torquing throughout their orbits is the most likely candidate.
机译:在过去的几年中,卫星与暗物质宿主径向对准的观测证据一直在稳步积累。从大规模的星系团到银河大小的系统,都可以在很宽的范围内看到这种效应,但尚未建立潜在的物理机制。为此,我们在高分辨率,N体宇宙学模拟中对暗物质亚结构的形状和取向进行了详细分析。我们发现子结构与其主体光晕径向对齐的强烈趋势:光晕主轴的分布非常各向异性,大多数指向主体的质心。一旦亚晕首次通过宿主的病毒半径,该比对即达到峰值,但即使光环经过了多达四个绕心通道之后,该对准也不会随后被稀释。这些证据表明,存在着作用于这些系统的非常快速的动力学机制,我们认为,在整个轨道上施加潮汐力矩是最有可能的。

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