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首页> 外文期刊>The Astrophysical journal >Figure Rotation of Cosmological Dark Matter Halos
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Figure Rotation of Cosmological Dark Matter Halos

机译:宇宙黑暗物质光环的图旋转

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摘要

We have analyzed galaxy- and group-sized dark matter halos formed in a high-resolution ΛCDM numerical N-body simulation in order to study the rotation of the triaxial figure, a property in principle independent of the angular momentum of the particles themselves. Such figure rotation may have observational consequences, such as triggering spiral structure in extended gas disks. The orientation of the major and minor axes are compared at five late snapshots of the simulation. Halos with significant substructure or that appear otherwise disturbed are excluded from the sample. We detect smooth figure rotation in 288 of the 317 halos in the sample. The pattern speeds follow a lognormal distribution centered at Ωp = 0.148 h km s-1 kpc-1 with a width of 0.83. These speeds are an order of magnitude smaller than required to explain the spiral structure of galaxies such as NGC 2915. The axis about which the figure rotates aligns very well with the halo minor axis in 85% of the halos and with the major axis in the remaining 15% of the halos. The figure rotation axis is usually reasonably well aligned with the angular momentum vector. The pattern speed is correlated with the halo spin parameter λ but shows no correlation with the halo mass. The halos with the highest pattern speeds show particularly strong alignment between their angular momentum vectors and their figure rotation axes. The figure rotation is coherent outside 0.12rvir. The measured pattern speed and degree of internal alignment of the figure rotation axis drops in the innermost region of the halo, which may be an artifact of the numerical force softening. The axis ratios show a weak tendency to become more spherical with time.
机译:为了研究三轴图形的旋转,我们分析了在高分辨率ΛCDM数值N体模拟中形成的银河系和群大小的暗物质晕,这在原理上与粒子本身的角动量无关。这种图形旋转可能会产生观察结果,例如触发扩展气碟中的螺旋结构。在模拟的五个后期快照中比较了长轴和短轴的方向。样品中排除了具有显着下部结构的光晕或看起来受到干扰的光晕。我们在样本中的317个光晕中的288个中检测到平滑的图形旋转。图案速度遵循对数正态分布,其中心为Ωp= 0.148 h km s-1 kpc-1,宽度为0.83。这些速度比解释星系的螺旋结构(如NGC 2915)所需的速度小一个数量级。图形旋转所绕的轴与光环的短轴(在光环的85%中)以及长轴在光环中的位置非常一致。剩余15%的光环。图形旋转轴通常与角动量矢量合理对齐。图案速度与光晕自旋参数λ相关,但是与光晕质量没有相关性。具有最高图案速度的光环在其角动量矢量和图形旋转轴之间显示出特别强的对齐方式。图形旋转在0.12rvir之外是连贯的。测得的图案速度和图形旋转轴的内部对齐程度在光环的最内部区域下降,这可能是数字力软化的伪影。轴比显示出随时间变得更球形的微弱趋势。

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