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首页> 外文期刊>The Astrophysical journal >ACCRETION SHOCKS IN CLUSTERS OF GALAXIES AND THEIR SZ SIGNATURE FROM COSMOLOGICAL SIMULATIONS
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ACCRETION SHOCKS IN CLUSTERS OF GALAXIES AND THEIR SZ SIGNATURE FROM COSMOLOGICAL SIMULATIONS

机译:来自宇宙学模拟的星系群中的增生激增及其SZ签名

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Cold dark matter (CDM) hierarchical structure formation models predict the existence of large-scale accretion shocks between the virial and turnaround radii of clusters of galaxies. Kocsis et?al. suggest that the Sunyaev-Zel'dovich signal associated with such shocks might be observable with the next generation radio interferometer, ALMA (Atacama Large Millimeter Array). We study the three-dimensional distribution of accretion shocks around individual clusters of galaxies drawn from adaptive mesh refinement (AMR) and smoothed particle hydrodynamics simulations of ΛCDM (dark energy dominated CDM) models. In relaxed clusters, we find two distinct sets of shocks. One set ("virial shocks"), with Mach numbers of 2.5-4, is located at radii 0.9-1.3 R vir, where R vir is the spherical infall estimate of the virial radius, covering about 40%-50% of the total surface area around clusters at these radii. Another set of stronger shocks ("external shocks") is located farther out, at about 3 R vir, with large Mach numbers (≈100), covering about 40%-60% of the surface area. We simulate SZ surface brightness maps of relaxed massive galaxy clusters drawn from high-resolution AMR runs, and conclude that ALMA should be capable of detecting the virial shocks in massive clusters of galaxies. More simulations are needed to improve estimates of astrophysical noise and to determine optimal observational strategies.
机译:冷暗物质(CDM)分层结构形成模型预测星系团的病毒半径和周转半径之间存在大规模吸积冲击。 Kocsis等人。这表明与此类冲击有关的Sunyaev-Zel'dovich信号可能会用下一代无线电干涉仪ALMA(阿塔卡马大毫米波阵列)观察到。我们研究了从自适应网格细化(AMR)和ΛCDM(暗能量主导的CDM)模型的平滑粒子流体动力学模拟得出的星系的单个星团周围增生冲击的三维分布。在轻松的集群中,我们发现了两组不同的冲击。一组(“病毒冲击”)的马赫数为2.5-4,位于半径为0.9-1.3的R vir处,其中R vir是球形病毒半径的球形落入估算值,约占总数的40%-50%在这些半径处簇周围的表面积。另一组更强的冲击(“外部冲击”)位于更远的位置,大约3 R vir,马赫数大(≈100),约占表面积的40%-60%。我们模拟了从高分辨率AMR运行绘制的弛豫大质量星系团的SZ表面亮度图,并得出结论,ALMA应该能够检测大质量星系团中的病毒冲击。需要更多的模拟来改善对天体物理学噪声的估计并确定最佳的观测策略。

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