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XMM-Newton and Gemini Observations of Eight RASSCALS Galaxy Groups*

机译:XMM-Newton和Gemini对八个RASSCALS星系组的观察*

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We study the distribution of gas pressure and entropy in eight groups of galaxies belonging to the ROSAT All-Sky Survey/Center for Astrophysics Loose Systems (RASSCALS). We use archival and proprietary XMM-Newton observations, supplementing the X-ray data with redshifts derived from the literature; we also list 127 new redshifts measured with the Gemini North telescope. The groups are morphologically heterogeneous in both the optical and the X-ray, and several suffer from superpositions with background galaxies or clusters of galaxies. Nevertheless, they show remarkable self-similarity in their azimuthally averaged entropy and temperature profiles. The entropy increases with radius; the behavior of the entropy profiles is consistent with an increasing broken power law with inner and outer slope 0.92 and 0.42 (68% confidence), respectively. There is no evidence of a central, isentropic core, and the entropy distribution in most of the groups is flatter at large radii than in the inner region, challenging earlier reports, as well as theoretical models predicting large isentropic cores or asymptotic slopes of 1.1 as r → ∞. The pressure profiles are consistent with a self-similar decreasing broken power law in radius; the inner and outer slopes are -0.78 and -1.7, respectively. The results suggest that the larger scatter in the entropy distribution reflects the varied gasdynamical histories of the groups; the regularity and self-similarity of the pressure profiles is a sign of a similarity in the underlying dark matter distributions.
机译:我们研究了八组星系中的气压和熵的分布,这些星系属于ROSAT全天候测量/中心,即天体物理学松散系统(RASSCALS)。我们使用档案和专有的XMM-Newton观测值,对X射线数据进行补充,并根据文献得出红移。我们还列出了用双子座北望远镜测得的127个新的红移。这些基团在光学和X射线上在形态上都是异质的,并且其中一些基团与背景星系或星系团重叠。但是,它们在方位角平均熵和温度曲线上显示出显着的自相似性。熵随半径增加;熵分布的行为与内,外斜率分别为0.92和0.42(68%置信度)的增加的破坏幂定律一致。没有证据表明中心有一个等熵核心,并且大多数组的熵分布在大半径处比内部区域更平坦,这对早期的报告提出了挑战,而且理论模型预测大的等熵核心或1.1的渐近坡度r→∞。压力分布与半径自相似的减小的折断功率定律一致;内斜率和外斜率分别为-0.78和-1.7。结果表明,熵分布中较大的散射反映了各组的变化的气体动力学历史。压力分布的规律性和自相似性是潜在暗物质分布相似的标志。

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