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The absorption lines in the spectra of high redshift qsos
Authors:Chen Jian-sheng  Donald C Morton  Bruce Peterson  Allen Wright  David Jauncey
Institution:Beijing Observatory, Academia Sinica, China;Anglo-Australian Observatory, Box 296, Epping, NSW, Australia;Mt. Stromlo and Siding Spring Observatories, Private Bag, Woden, A.C.T. 2606, Australia;Australian National Radio Astronomy Observatory, box 276, Parkes, N.S.W. 2870, Australia;CSIRO Division of Radiophysics, Box 76, N.S.W. 2121, Australia
Abstract:Based on the spectra of 4 high-redshift quasars (resolution 2A) obtained by us 1–5] using IPCS on the RGO Cassegrain spectrograph of the AAT, we point out the following. 1. Auto-correlation peaks at in PKS 0805+046 and PKS 1442+101 suggest that the large number of absorption lines shortward of Lα in high redshift quasars are due to absorption by hydrogen clouds. 2. The distribution of absorption lines and the correlation function of indicate that PKS 0528-250 may be an exception, requiring further observation. 3. Absorption redshift systems containing metallic lines may be produced by either matter ejected from the quasar, or an associated galaxy cluster or an intervening galaxy. 4. The randomness in the column density and the dispersion velocity deduced from the curve of growth of the pair supports the hypothesis that the pure Lα absorption comes from primitive hydrogen clouds in the early, exploding universe. 5. The number of hydrogen clouds per unit redshift interval is determined by the data of absorption lines of quasars with Z > 3.
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