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首页> 外文期刊>The Astrophysical journal >VOIGT-PROFILE ANALYSIS OF THE Lyα FOREST IN A COLD DARK MATTER UNIVERSE
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VOIGT-PROFILE ANALYSIS OF THE Lyα FOREST IN A COLD DARK MATTER UNIVERSE

机译:冷暗物质宇宙Lyα森林的声音特征分析

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We use an automated Voigt-profile fitting procedure to extract statistical properties of the Lyα forest in a numerical simulation of an Ω = 1, cold dark matter (CDM) universe. Our analysis method is similar to that used in most observational studies of the forest, and we compare the simulations to recently published results derived from Keck HIRES spectra. With the Voigt-profile decomposition analysis, the simulation reproduces the large number of weak lines (N_(H I) approx < 10~(14) cm~(-2)) found in the HIRES spectra. The column density distribution evolves significantly between z = 3 and z = 2, with the number of lines at fixed column density dropping by a factor ~1.6 in the range where line blending is not severe. At z = 3, the b-parameter distribution has a median of 35 km s~(-1) and a dispersion of 20 km s~(-1), in reasonable agreement with the observed values. The comparison between our new analysis and recent data strengthens earlier claims that the Lyα forest arises naturally in hierarchical structure formation as pho-toionized gas falls into dark matter potential wells. However, there are two statistically signficant discrepancies between the simulated forest and the HIRES results: the model produces too many lines at z = 3 by a factor ~1.5-2, and it produces more narrow lines (b < 20 km s~(-1)) than are seen in the data. The first result is sensitive to our adopted normalization of the mean Lyα optical depth, and the second is sensitive to our assumption that helium reionization has not significantly raised gas temperatures at z = 3. It is therefore too early to say whether these discrepancies indicate a fundamental problem with the high-redshift structure of the Ω = 1 CDM model or reflect errors of detail in our modeling of the gas distribution or the observational procedures.
机译:我们使用自动Voigt剖面拟合程序在Ω= 1,冷暗物质(CDM)宇宙的数值模拟中提取Lyα森林的统计属性。我们的分析方法与大多数森林观测研究中使用的分析方法相似,我们将模拟结果与最近从Keck HIRES光谱得出的结果进行了比较。通过Voigt轮廓分解分析,该模拟再现了在HIRES光谱中发现的大量弱线(N_(H I)大约<10〜(14)cm〜(-2))。在z = 3和z = 2之间,列密度分​​布显着变化,在行混合不严重的范围内,固定列密度下的行数下降了约1.6倍。在z = 3时,b参数分布的中位数为35 km s〜(-1),且色散为20 km s〜(-1),与观测值合理吻合。我们的新分析与最新数据之间的比较进一步证实了先前的说法,即当光气化的气体落入暗物质潜在的井中时,Lyα森林自然以分层结构形成。但是,模拟森林与HIRES结果之间存在两个统计上的显着差异:模型在z = 3处产生的线过多,系数约为1.5-2,并且产生的线更窄(b <20 km s〜(- 1))比数据中所见。第一个结果对我们采用的平均Lyα光学深度的标准化很敏感,第二个结果对我们的假设氦离子化并没有显着提高z = 3时的气体温度很敏感。因此,现在说这些差异是否表明Ω= 1 CDM模型的高红移结构的基本问题,或者反映了我们在气体分布或观测程序建模中的细节误差。

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