首页> 外文期刊>The Astrophysical journal >RADIAL PROFILE AND LOGNORMAL FLUCTUATIONS OF THE INTRACLUSTER MEDIUM AS THE ORIGIN OF SYSTEMATIC BIAS IN SPECTROSCOPIC TEMPERATURE
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RADIAL PROFILE AND LOGNORMAL FLUCTUATIONS OF THE INTRACLUSTER MEDIUM AS THE ORIGIN OF SYSTEMATIC BIAS IN SPECTROSCOPIC TEMPERATURE

机译:谱内温度作为系统偏置的起源于表内介质的径向分布和对数正态波动

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摘要

The origin of the recently reported systematic bias in the spectroscopic temperature of galaxy clusters is investigated using a cosmological hydrodynamic simulation. We find that the local inhomogeneities of the gas temperature and density, after being corrected for their global radial profiles, have a nearly universal distribution that resembles a lognormal function. Based on this lognormal approximation for the fluctuations in the intracluster medium, we develop an analytical model that explains the bias in the spectroscopic temperature. We conclude that the multiphase nature of the intracluster medium, due not only to the radial profiles but also to the local inhomogeneities, plays an essential role in producing the systematic bias.
机译:使用宇宙流体动力学模拟研究了最近报道的星系团光谱温度系统偏差的起源。我们发现,气体温度和密度的局部不均匀性,在对其整体径向轮廓进行校正后,具有近似对数正态函数的几乎普遍分布。基于对群内介质波动的对数正态近似,我们开发了一个解析模型,可以解释光谱温度的偏差。我们得出结论,集群内部介质的多相性质,不仅由于径向轮廓,还由于局部不均匀性,在产生系统偏差方面起着至关重要的作用。

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