MULTIPHASE GAS IN QUASAR ABSORPTION-LINE SYSTEMS

被引:28
作者
GIROUX, ML
SUTHERLAND, RS
SHULL, JM
机构
[1] NATL INST STAND & TECHNOL,BOULDER,CO 80309
[2] UNIV COLORADO,CTR ASTROPHYS & SPACE ASTRON,DEPT ASTROPHYS PLANETARY & ATMOSPHER SCI,BOULDER,CO 80309
关键词
GALAXIES; EVOLUTION; ISM; INTERGALACTIC MEDIUM; QUASARS; ABSORPTION LINES;
D O I
10.1086/187603
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
In the standard model for H I Lyman-limit (LL) quasar absorption-line systems, the absorbing matter is galactic disk and halo gas, heated and photoionized by the metagalactic radiation field produced by active galaxies. In recent Hubble Space Telescope observations (Reimers et al. 1992; Vogel and Reimers 1993; Reimers and Vogel 1993) of LL systems along the line of sight to the quasar HS 1700+6416, surprisingly high He I/H I ratios and a wide distribution of column densities of C, N, and O ions are deduced from extreme ultraviolet absorption lines. We show that these observations are incompatible with photoionization equilibrium by a single metagalactic ionizing background. We argue that these quasar absorption systems possess a multiphase interstellar medium similar to that of our Galaxy, in which extended hot, collisionally ionized gas is responsible for some or all of the high ionization stages of heavy elements. From the He/H ratios we obtain -4.0 less than or equal to log U less than or equal to -3.0, while the CNO ions are consistent with hot gas in collisional ionization equilibrium at log T = 5.3 and [O/H] = -1.6. The supernova rate necessary to produce these heavy elements and maintain the hot-gas energy budget of similar to 10(41.5) ergs s(-1) is similar to 10(-2) yr(-1), similar to that which maintains the ''three-phase'' interstellar medium in our own Galaxy. As a consequence of the change in interpretation from photoionized gas to a multiphase medium, the derived heavy-element abundances (e.g., O/C) of these systems are open to question owing to substantial ionization corrections for unseen C v in the hot phase. The metal-line ratios may also lead to erroneous diagnostics of the shape of the metagalactic ionizing spectrum and the ionizing parameter of the absorbers.
引用
收藏
页码:L97 / L100
页数:4
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