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A New interpretation of chain galaxies at high redshift

Astrophysics 2009-10-31 v1

Abstract

We propose a possible new model for the formation of chain galaxies at high redshift. Our model is summarized as follows. Step I: Successive merging of subgalactic gas clumps results in the formation of a galaxy with a mass of 101112M10^{11-12} M_\odot at redshift z5z \sim 5. Step II: Subsequently, supernova explosions occur inside the galaxy and then blow out as a galactic wind (or a superwind). This wind expands into the intergalactic space and then causes a large-scale shell with a radius of several hundreds of kpc. Since this radius may be smaller than the typical separation between galaxies, interactions of shells may also occur, resulting in the formation of a large-scale gaseous slab. Step III: Since the shell or the slab can be regarded as a gaseous sheet, filament-like gravitational instability is expected to occur. Step IV: Further gravitational instability occurs in each filament, leading to intense star formation along the filament. This is the chain galaxy phase. Step V: The filament collapses gravitationally into one spheroidal system like an elliptical galaxy within one dynamical timescale of the filament (108\sim 10^8 yr). Therefore, it seems quite difficult to find remnants of chain galaxies. We also discuss that shocked shells driven by superwinds may be responsible for some Lyman limit systems and damped Lyα\alpha systems because their H {\sc i} column densities are expected to be NHI1019N_{\rm HI} \gtrsim 10^{19} cm2^{-2}.

Keywords

Cite

@article{arxiv.astro-ph/0008379,
  title  = {A New interpretation of chain galaxies at high redshift},
  author = {Yoshiaki Taniguchi and Yasuhiro Shioya},
  journal= {arXiv preprint arXiv:astro-ph/0008379},
  year   = {2009}
}

Comments

11 pages with 2 figures, Accepted for publication in ApJ