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The influence of streaming velocities on the formation of the first stars.

Authors :
Schauer, Anna T P
Glover, Simon C O
Klessen, Ralf S
Ceverino, Daniel
Source :
Monthly Notices of the Royal Astronomical Society. Apr2019, Vol. 484 Issue 3, p3510-3521. 12p.
Publication Year :
2019

Abstract

How, when, and where the first stars formed are fundamental questions regarding the epoch of cosmic dawn. A second-order effect in the fluid equations was recently found to make a significant contribution: an offset velocity between gas and dark matter, the so-called streaming velocity. Previous simulations of a limited number of low-mass dark matter haloes suggest that this streaming velocity can delay the formation of the first stars and decrease halo gas fractions and the halo mass function in the low-mass regime. However, a systematic exploration of its effects in a large sample of haloes has been lacking until now. In this paper, we present results from a set of cosmological simulations of regions of the Universe with different streaming velocities performed with the moving mesh code arepo. Our simulations have very high mass resolution, enabling us to accurately resolve minihaloes as small as 105 M⊙. We show that in the absence of streaming, the least massive halo that contains cold gas has a mass M halo, min = 5 × 105 M⊙, but that cooling only becomes efficient in a majority of haloes for halo masses greater than |$M_{\rm halo,50{{\ \rm per\ cent}}} = 1.6 \times 10^6 \: {\rm M_{\odot }}$|⁠. In regions with non-zero streaming velocities, M halo, min and |$M_{\rm halo,50{{\ \rm per\ cent}}}$| both increase significantly, by around a factor of a few for each one sigma increase in the value of the local streaming velocity. As a result, in regions with streaming velocities |$v_\mathrm{stream} \ge 3\, \sigma _\mathrm{rms}$|⁠, cooling of gas in minihaloes is completely suppressed, implying that the first stars in these regions form within atomic cooling haloes. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00358711
Volume :
484
Issue :
3
Database :
Academic Search Index
Journal :
Monthly Notices of the Royal Astronomical Society
Publication Type :
Academic Journal
Accession number :
135381678
Full Text :
https://doi.org/10.1093/mnras/stz013