论文标题
在带有mond的星系簇中的病毒定理
Virial theorem in clusters of galaxies with MOND
论文作者
论文摘要
已证明对牛顿动力学的特定修改已被证明可以在不同尺度上重现大多数天体物理系统的动力学,而无需调用非巴里型暗物质(DM)。但是,当Mond以缺陷的形式应用于富的星系簇时,存在一个长期的未解决问题(大约两个因素),这是根据观察结果衍生自病毒定理的预测动力质量质量。在本文中,我们使用沿视线的簇构件的速度分散处理病毒定理,而不是使用X射线数据和静水平衡的簇温度。开发了牛顿重力+DM和MOND的病毒定理的分析计算,并对非关闭系统应用压力(表面)校正。使用了DM概况,Baryonic比率和Baryonic($β$模型或其他)剖面的最新校准,同时允许自由参数在观察性约束内范围。结果表明,MOND在簇中存在解决方案,从而给予牛顿+DM类似的结果 - 尤其是在$β= 0.55-0.70 $的等温$β$模型的情况下,核心radii $ r_c $在0.1和0.3倍$ r_ {500} $之间(与已知数据一致)。在先前的研究中发现的分歧似乎是由于缺乏压力校正(基于不适当的静水平衡假设)和/或用于重型物质概况的不适当参数。
A specific modification of Newtonian dynamics known as MOND has been shown to reproduce the dynamics of most astrophysical systems at different scales without invoking non-baryonic dark matter (DM). There is, however, a long-standing unsolved problem when MOND is applied to rich clusters of galaxies in the form of a deficit (by a factor around two) of predicted dynamical mass derived from the virial theorem with respect to observations. In this article we approach the virial theorem using the velocity dispersion of cluster members along the line of sight rather than using the cluster temperature from X-ray data and hydrostatic equilibrium. Analytical calculations of the virial theorem in clusters for Newtonian gravity+DM and MOND are developed, applying pressure (surface) corrections for non-closed systems. Recent calibrations of DM profiles, baryonic ratio and baryonic ($β$ model or others) profiles are used, while allowing free parameters to range within the observational constraints. It is shown that solutions exist for MOND in clusters that give similar results to Newton+DM -- particularly in the case of an isothermal $β$ model for $β=0.55-0.70$ and core radii $r_c$ between 0.1 and 0.3 times $r_{500}$ (in agreement with the known data). The disagreements found in previous studies seem to be due to the lack of pressure corrections (based on inappropriate hydrostatic equilibrium assumptions) and/or inappropriate parameters for the baryonic matter profiles.