English

A Study of Two Diffuse Dwarf Galaxies in the Field

Astrophysics of Galaxies 2018-11-06 v2

Abstract

We present optical long-slit spectroscopy and far-ultraviolet to near-infrared spectral energy distribution fitting of two diffuse dwarf galaxies, LSBG-285 and LSBG-750, which were recently discovered by the Hyper Suprime-Cam Subaru Strategic Program (HSC-SSP). We measure redshifts using Hα\alpha line emission, and find that these galaxies are at comoving distances of 25{\approx}25 and 41{\approx}41 Mpc, respectively, after correcting for the local velocity field. They have effective radii of reff=1.2r_\mathrm{eff}=1.2 and 1.8 kpc and stellar masses of M2M_\star\approx2-3×107 M3\times10^{7}~M_\odot. There are no massive galaxies (M>1010MM_\star>10^{10} M_\odot) within a comoving separation of at least 1.5 Mpc from LSBG-285 and 2 Mpc from LSBG-750. These sources are similar in size and surface brightness to ultra-diffuse galaxies, except they are isolated, star-forming objects that were optically selected in an environmentally blind survey. Both galaxies likely have low stellar metallicities [Z/Z]<1.0[Z_\star/Z_\odot] < -1.0 and are consistent with the stellar mass-metallicity relation for dwarf galaxies. We set an upper limit on LSBG-750's rotational velocity of 50{\sim}50 km s1^{-1}, which is comparable to dwarf galaxies of similar stellar mass with estimated halo masses <1011 M<10^{11}~M_\odot. We find tentative evidence that the gas-phase metallicities in both of these diffuse systems are high for their stellar mass, though a statistically complete, optically-selected galaxy sample at very low surface brightness will be necessary to place these results into context with the higher-surface-brightness galaxy population.

Keywords

Cite

@article{arxiv.1805.04118,
  title  = {A Study of Two Diffuse Dwarf Galaxies in the Field},
  author = {Johnny P. Greco and Andy D. Goulding and Jenny E. Greene and Michael A. Strauss and Song Huang and Ji Hoon Kim and Yutaka Komiyama},
  journal= {arXiv preprint arXiv:1805.04118},
  year   = {2018}
}

Comments

16 pages, 6 figures; accepted for publication in ApJ

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