English

The Star Forming Main Sequence of Dwarf Low Surface Brightness Galaxies

Astrophysics of Galaxies 2017-12-11 v2

Abstract

We explore the star forming properties of late type, low surface brightness (LSB) galaxies. The star forming main sequence (SFR-MM_*) of LSB dwarfs has a steep slope, indistinguishable from unity (1.04±0.061.04 \pm 0.06). They form a distinct sequence from more massive spirals, which exhibit a shallower slope. The break occurs around M1010  MM_* \approx 10^{10}\;M_{\odot}, and can also be seen in the gas mass-stellar mass plane. The global Kennicutt-Schmidt law (SFR-MgM_g) has a slope of 1.47±0.111.47 \pm 0.11 without the break seen in the main sequence. There is an ample supply of gas in LSB galaxies, which have gas depletion times well in excess of a Hubble time, and often tens of Hubble times. Only 3%\sim 3\% of this cold gas need be in the form of molecular gas to sustain the observed star formation. In analogy with the faint, long-lived stars of the lower stellar main sequence, it may be appropriate to consider the main sequence of star forming galaxies to be defined by thriving dwarfs (with M<1010  MM_* < 10^{10}\;M_{\odot}) while massive spirals (with M>1010  MM_* > 10^{10}\;M_{\odot}) are weary giants that constitute more of a turn-off population.

Keywords

Cite

@article{arxiv.1710.11236,
  title  = {The Star Forming Main Sequence of Dwarf Low Surface Brightness Galaxies},
  author = {Stacy McGaugh and Jim Schombert and Federico Lelli},
  journal= {arXiv preprint arXiv:1710.11236},
  year   = {2017}
}

Comments

Accepted for publication in the Astrophysical Journal. 11 pages, 3 figures. Second version identical to original version; fixed one typo in metadata abstract