High star formation rates as the origin of turbulence in early and modern disk galaxies
arXiv:1010.1262 · doi:10.1038/nature09452
Abstract
High spatial and spectral resolution observations of star formation and kinematics in early galaxies have shown that two-thirds are massive rotating disk galaxies with the remainder being less massive non-rotating objects. The line of sight averaged velocity dispersions are typically five times higher than in today's disk galaxies. This has suggested that gravitationally-unstable, gas-rich disks in the early Universe are fuelled by cold, dense accreting gas flowing along cosmic filaments and penetrating hot galactic gas halos. However these accreting flows have not been observed, and cosmic accretion cannot power the observed level of turbulence. Here we report on a new sample of rare high-velocity-dispersion disk galaxies we have discovered in the nearby Universe where cold accretion is unlikely to drive their high star-formation rates. We find that the velocity dispersion is most fundamentally correlated with their star-formation rates, and not their mass nor gas fraction, which leads to a new picture where star formation itself is the energetic driver of galaxy disk turbulence at all cosmic epochs.
9 pages, 2 figures, Supplimentary Info available at: http://pulsar.swin.edu.au/~agreen/nature/sigma_mean_arXiv.pdf. Accepted for publication in Nature
References in corpus (6)
- Cold streams in early massive hot haloes as the main mode of galaxy formation
- The rapid formation a large rotating disk galaxy three billion years after the Big Bang
- Bulge Formation by the Coalescence of Giant Clumps in Primordial Disk Galaxies
- The formation and assembly of a typical star-forming galaxy at z~3
- GHASP : An Halpha kinematic survey of 203 spiral and irregular galaxies - VII. Revisiting the analysis of Halpha data cubes for 97 galaxies
- The H alpha Galaxy Survey. IV. Star formation in the local Universe
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