Back to Search Start Over

PEARLS: A Potentially Isolated Quiescent Dwarf Galaxy with a TRGB Distance of 30 Mpc

Authors :
Carleton, Timothy
Ellsworth-Bowers, Timothy
Windhorst, Rogier A.
Cohen, Seth H.
Conselice, Christopher J.
Diego, Jose M.
Zitrin, Adi
Archer, Haylee N.
McIntyre, Isabel
Kamieneski, Patrick
Jansen, Rolf A.
Summers, Jake
D'Silva, Jordan C. J.
Koekemoer, Anton M.
Coe, Dan
Driver, Simon P.
Frye, Brenda
Grogin, Norman A.
Marshall, Madeline A.
Nonino, Mario
Pirzkal, Nor
Robotham, Aaron
Ryan, Jr., Russell E.
Ortiz III, Rafael
Tompkins, Scott
Willmer, Christopher N. A.
Yan, Haojing
Holwerda, Benne W.
Publication Year :
2023

Abstract

A wealth of observations have long suggested that the vast majority of isolated classical dwarf galaxies ($M_*=10^7$-$10^9$ M$_\odot$) are currently star-forming. However, recent observations of the large abundance of "Ultra-Diffuse Galaxies" beyond the reach of previous large spectroscopic surveys suggest that our understanding of the dwarf galaxy population may be incomplete. Here we report the serendipitous discovery of an isolated quiescent dwarf galaxy in the nearby Universe, which was imaged as part of the PEARLS GTO program. Remarkably, individual red-giant branch stars are visible in this near-IR imaging, suggesting a distance of $30\pm4$ Mpc, and a wealth of archival photometry point to an sSFR of $2\times10^{-11}$ yr$^{-1}$ and SFR of $4\times10^{-4}$ M$_\odot$ yr$^{-1}$. Spectra obtained with the Lowell Discovery Telescope find a recessional velocity consistent with the Hubble Flow and ${>}1500$ km/s separated from the nearest massive galaxy in SDSS, suggesting that this galaxy was either quenched from internal mechanisms or had a very high-velocity ($>1000$ km/s) interaction with a nearby massive galaxy in the past. This analysis highlights the possibility that many nearby quiescent dwarf galaxies are waiting to be discovered and that JWST has the potential to resolve them.<br />Comment: Accepted to ApJ Letters

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.2309.16028
Document Type :
Working Paper