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2016MNRAS.457.2005K - Mon. Not. R. Astron. Soc., 457, 2005-2028 (2016/April-1)

Triple-ionized carbon associated with the low-density neutral hydrogen gas at 1.7 < z < 3.3: the integrated N H I-N C iv relation.

KIM T.-S., CARSWELL R.F., MONGARDI C., PARTL A.M., MUCKET J.P., BARAI P. and CRISTIANI S.

Abstract (from CDS):

From the Voigt profile fitting analysis of 183 intervening systems at 1.7 z systems (∼75 per cent) display a well-characterized scaling relation between integrated column densities of and with a negligible redshift evolution, when column densities of all the and components are integrated within a given ±150 km/s range centred at the flux minimum. The integrated column density increases with at and , then becomes almost independent of at , with a large scatter: at , , with C1=-1.90±0.55, C2=-14.11±0.19 and C3=14.76±0.17, respectively. The steep (flat) part is dominated by -free (-enriched) systems. Extrapolating the - relation implies that most absorbers with are virtually -free. The - relation does not hold for individual components, clumps or the integrated velocity range less than ±100 km/s. This is expected if the line-of-sight extent of is smaller than and decreases more rapidly than at the larger impact parameter, regardless of the location of the + gas in intergalactic medium filaments or in intervening galactic haloes.

Abstract Copyright: © 2016 The Authors Published by Oxford University Press on behalf of the Royal Astronomical Society

Journal keyword(s): intergalactic medium - quasars: absorption lines - cosmology: observation

Simbad objects: 22

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