Galactic winds - how to launch galactic outflows in typical Lyman-break galaxies

被引:15
|
作者
von Glasow, W. [1 ,2 ]
Krause, M. G. H. [1 ,2 ,3 ]
Sommer-Larsen, J. [2 ,4 ]
Burkert, A. [1 ,2 ,3 ]
机构
[1] Univ Munich, Univ Sternwarte, D-81679 Munich, Germany
[2] Tech Univ Munich, Excellence Cluster Universe, D-85748 Garching, Germany
[3] Max Planck Inst Extraterr Phys, D-85748 Garching, Germany
[4] Univ Copenhagen, Niels Bohr Inst, Dark Cosmol Ctr, DK-2100 Copenhagen, Denmark
关键词
methods: numerical; ISM: bubbles; galaxies: evolution; galaxies: haloes; galaxies: high-redshift; galaxies: ISM; STAR-FORMING GALAXIES; LY-ALPHA RADIATION; INTEGRAL FIELD SPECTROSCOPY; COSMOLOGICAL SIMULATIONS; INTERSTELLAR-MEDIUM; BUOYANT BUBBLES; 3-DIMENSIONAL SIMULATIONS; ULTRAVIOLET-SPECTRA; ACCRETION HISTORIES; EVOLUTION;
D O I
10.1093/mnras/stt1060
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
We perform hydrodynamical simulations of a young galactic disc embedded in a hot gaseous halo using parameters typical for Lyman-break galaxies (LBGs). We take into account the (static) gravitational potentials due to a dark matter halo, a stellar bulge and a disc of stars and gas. Star formation is treated by a local Kennicutt-Schmidt law. We simplify the structure of the interstellar medium (ISM) by restricting the computational domain to a 25th of the full azimuthal angle, effectively assuming large-scale axisymmetry and neglecting any effects of spiral structure and focus on the large-scale ISM drivers, the superbubbles. Supernovae are triggered randomly and have preset event sizes of several tens to hundreds. We further investigate different halo gas pressures and energy injection methods. Many of our simulated galaxies, but not all, develop bipolar outflows. We characterize the strength of the outflow by mass and energy outflow rates, and investigate the effect of changes to the details of the model. We find that supernovae are more effective if comprised into larger superbubbles. The weight and the pressure of the halo gas is able to quench galactic outflows. The wind emerges from a series of superbubbles in regions where a critical star formation density is exceeded. The superbubbles expand into the gaseous halo at slightly supersonic speed, producing radiative shock waves with similar characteristics as the absorption systems observed around LBGs.
引用
收藏
页码:1151 / 1170
页数:20
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