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The Redshift Evolution of CIV in Galaxy Halos

Published online by Cambridge University Press:  25 May 2016

E. A. Stengler Larrea*
Affiliation:
Royal Greenwich Observatory, Madingley Road, Cambridge CB3 0EZ, UK

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Improved and reliable profile fitting codes have made it recently possible to calculate reliable column densities of gas producing QSO absorption lines. Even using intermediate to low resolution spectra, the obtained column densities are very accurate, as has been extensively proved by Jenkins (1986). We applied this technique to the 131 CIV absorption systems in the survey by Sargent Boksenberg and Steidel (1988) and Steidel (1990). Since several lines were saturated, many CIV column densities, N(CIV), are only lower limits, and a survival analysis (Avni et al. 1980) is required to obtain the underlying redshift distribution of CIV column densities, which we present in Figure 1. Together with the number density distribution of strong (log N(CIV) ≥ 14.2) and weak systems shown in Figure 2, we have found that i. Both strong and weak systems become generally weaker below z ∼ 2, and II. Weak systems become less numerous below z ∼ 2, whereas the stronger systems grow steadily in number density down the lowest redshifts sampled. For details of the analysis, and on how this fits into a model for the CIV absorption systems see Stengler-Larrea et al. (1995, in preparation).

Type
Poster Papers
Copyright
Copyright © Kluwer 1996 

References

Avni, Y., Soltan, A., Tananbaum, H., and Zamorani, G. 1980, Ap.J. 238, 800.Google Scholar
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Sargent, W.L.W., Boksenberg, A., and Steidel, C.C. 1988, Ap.J.S. 68, 539.Google Scholar
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