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首页> 外文期刊>The Astrophysical journal >PROBING Lyα ABSORBERS WITH DOUBLE LINES OF SIGHT
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PROBING Lyα ABSORBERS WITH DOUBLE LINES OF SIGHT

机译:用双线探究Lyα吸收剂

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Study of Lyα absorption lines in the spectra of double line-of-sight (DLOS) quasars holds the promise of diagnosing the nature of the structures that give rise to Lyα absorption. Based on simulations of DLOS with various separations through a single population of absorbers, four tests have been designed to diagnose absorber mass distributions (smoothly varying with radius or irregular), geometries (spherical or disk/slab-like), and kinematics (isotropic or systematic velocities). Applying the tests to existing data at z ~ 2 we find the following. (1) The observed neutral hydrogen column density (N_H) distributions of Lyα lines coincident to both LOSs are consistent with a smooth mass distribution. (2) Observed large anticoincident N_H values are not consistent with a single population of smooth spherical absorbers, which should exhibit sharp cutoffs at small N_H in the N_H distribution. (3) There is marginal evidence that the observed rms value of velocity differences between coincident lines increases with DLOS separation, as is expected for disk/slab-like absorbers that have systematic velocity fields. (4) The observed velocity dispersion along a single LOS is small compared to the rms difference between widely separated LOS, which is not consistent with models of cloudlets moving isotropically within a spherical structure. Overall, only a smooth disk/slab-like model with systematic velocities remains consistent with the inferred properties of a single population of Ly? absorbers.
机译:在双视线(DLOS)类星体光谱中研究Lyα吸收线,有望诊断出引起Lyα吸收的结构的性质。基于通过单个吸收体进行各种分离的DLOS模拟,设计了四个测试来诊断吸收体质量分布(随半径平滑变化或不规则变化),几何形状(球形或圆盘/平板状)和运动学(各向同性或系统速度)。将测试应用于z〜2处的现有数据,我们发现以下内容。 (1)观察到的与两个LOS一致的Lyα线的中性氢柱密度(N_H)分布与光滑的质量分布一致。 (2)观察到的大的一致的N_H值与单个光滑的球形吸收体不符,它们在N_H分布中的小N_H处应显示出明显的截止值。 (3)有少量证据表明,观测到的重合线之间速度差的均方根值会随着DLOS分离的增加而增加,这对于具有系统速度场的圆盘/平板状吸收器是可以预期的。 (4)与广泛分离的LOS之间的均方根差相比,沿单个LOS观测到的速度色散较小,这与球状结构内各向同性运动的小云的模型不一致。总体而言,只有具有系统速度的光滑盘状/平板状模型仍与单个Ly?群体的推断性质保持一致。吸收体。

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