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Damped Lyman-alpha and Lyman Limit Absorbers in the Cold Dark Matter Model

机译:冷暗物质中的阻尼Lyman-alpha和Lyman极限吸收体   模型

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摘要

We study the formation of damped \lya and Lyman limit absorbers in ahierarchical clustering scenario using a gas dynamical simulation of an $\Omega= 1$, cold dark matter universe. In the simulation, these high column densitysystems are associated with forming galaxies. Damped \lya absorption, $N_{HI}\simgt 10^{20.2}\cm^{-2}$, arises along lines of sight that pass near thecenters of relatively massive, dense protogalaxies. Lyman limit absorption,$10^{17}\cm^{-2} \simlt N_{HI} \simlt 10^{20.2}\cm^{-2}$, develops on lines ofsight that pass through the outer parts of such objects or near the centers ofsmaller protogalaxies. The number of Lyman limit systems is less than observed,while the number of damped \lya systems is quite close to the observedabundance. Damped absorbers are typically $\sim 10$ kpc in radius, but thepopulation has a large total cross section because the systems are much morenumerous than present day $L_*$ galaxies. Our results demonstrate that highcolumn density systems like those observed arise naturally in a hierarchicaltheory of galaxy formation and that it is now possible to study these absorbersdirectly from numerical simulations.
机译:我们使用$ \ Omega = 1 $的冷暗物质宇宙的气体动力学模拟研究了分层聚类情况下阻尼\ lya和Lyman极限吸收体的形成。在模拟中,这些高列密度系统与形成星系有关。衰减的\ lya吸收$ N_ {HI} \ simgt 10 ^ {20.2} \ cm ^ {-2} $沿着视线产生,该视线通过相对较大的密集原恒星中心附近。莱曼极限吸收$ 10 ^ {17} \ cm ^ {-2} \ simlt N_ {HI} \ simlt 10 ^ {20.2} \ cm ^ {-2} $,是通过视线的外部而形成的物体或较小原恒星中心附近。 Lyman极限系统的数量少于观测到的数量,而阻尼\ lya系统的数量非常接近观测到的丰度。阻尼吸收器的半径通常为\ sim 10 $ kpc,但是由于系统比当今的$ L _ * $星系数量大得多,因此人口具有较大的总横截面。我们的研究结果表明,像观测到的那样的高柱密度系统自然地出现在星系形成的分层理论中,并且现在有可能直接从数值模拟中研究这些吸收体。

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