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LESSONS ON GALAXY FORMATION FROM OBSERVATIONS OF THE IGM

机译:从IGM的观察结果中形成Galaxy形成的课程

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High-resolution, high-S/N observations of the Lyman forest extend now from redshift zero to six, providing new insight into the physical conditions of the intergalactic medium and its evolution over more than 90% of the cosmic time. The universal expansion, the UV ionizing background and the gravitational condensation of structures are the driving factors shaping the number density and the column density distribution of the absorbers. A (limited) contribution of UV photons produced by galaxies is found to be important to reproduce the observed evolutionary pattern at very high and low redshift. The Lyman forest contains most of the baryons, at least at z > 1.5, and acts as a reservoir for galaxy formation. The typical Doppler parameter at a fixed column density is measured to slightly increase with decreasing redshift, but the inferred temperature at the mean density is increasing with redshift. The signatures of Hell reionization and feedback from the formation of galactic structures have possibly been detected in the Lyman forest.
机译:Lyman Forest的高分辨率,高S / N观察现在从红移零到六个延伸,为宇宙时间的90%以上超过90%的90%以上的宇宙介质的物理状况提供了新的洞察力。通用膨胀,UV电离背景和结构的重力凝结是塑造吸收剂的数量密度和列密度分布的驱动因子。 A(Limited)由星系产生的UV光子的贡献是重要的,重要的是在非常高,低的红移地上再现观察到的进化模式。莱曼森林含有大部分的重区,至少在Z> 1.5处,并作为Galaxy形成的储层。通过减小的射频测量固定柱密度的典型多普勒参数略微增加,但是在平均密度下的推断温度随着红移而增加。在莱曼森林中可能检测到地狱标准和从形成银河系结构的反馈的签名。

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