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Non-self-similarity in cosmological scaling laws

机译:宇宙尺度定律中的非自相似性

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Some years ago, the resolved temperature profile of X-ray clusters, observed by ASCA, led us to conclude that there is a break (bent) in the M-T relation. The quoted bent was interpreted in different ways: in some papers it was connected to the effect of the formation redshift,(20) or to cooling processes(29) and heating.(5) In the present paper, we re-derive the mass-temperature relation and its time evolution for clusters of galaxies in different cosmologies by means of a model based on the merging-halo formalism of Lacey and Cole (Mon. Not. R. Astron. Soc. 262, 627 (1993)) modified to take account of angular momentum acquisition by protostructures, of an external pressure term in the virial theorem, and a non-zero cosmological constant. In contrast to previous results, we show that the non-similarity in the M-T relation can be naturally explained in the quoted model that takes into account the amount of the angular momentum of a protostructure. This result is in disagreement with the widely accepted idea that the above non-similarity is due to non-gravitating processes such as those of heating/cooling. The main result of the present paper is that the self-similarity of the M-T relation is broken at the low mas end (T <= 3 keV), and that the evolution of the M-T relation, for a given M-vir, is more modest both in flat and open universes in comparison to previous estimate found in literature, even more modest than that found by Voit (Astrophys. J. 543, 113 (2000)). Moreover, the time evolution is more rapid in models with L = 0 than in models in which the angular momentum acquisition by protostructures is taken into account (L not equal 0).
机译:几年前,通过ASCA观测到的X射线团簇的解析温度分布图使我们得出结论,即M-T关系存在断裂(弯曲)。引用的弯曲有不同的解释方式:在某些论文中,它与地层红移的影响(20)或与冷却过程(29)和加热的影响有关。(5)在本文中,我们重新推导了质量通过基于Lacey和Cole的合并光晕形式主义的模型(Mon. Not。R. Astron。Soc。262,627(1993))将不同宇宙学中的星系团的温度-温度关系及其时间演化修改为考虑到原型结构获取角动量,维里定理中的外部压力项以及非零宇宙学常数。与以前的结果相反,我们表明在M-T关系中的非相似性可以在引用模型中自然地解释,该模型考虑了原型结构的角动量。该结果与广泛接受的想法不同,即上述非相似性是由于非重力过程(例如加热/冷却过程)引起的。本文的主要结果是MT关系的自相似性在低质量端(T <= 3 keV)被打破,并且对于给定的M-vi​​r,MT关系的演化更加与文献中先前的估计相比,在平坦宇宙和开放宇宙中都适度,甚至比Voit发现的更为适度(Astrophys。J. 543,113(2000))。此外,与考虑原型结构获取角动量的模型(L不等于0)相比,L = 0的模型中的时间演化更快。

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