Reading between the (Spectral) Lines: Magellan/IMACS Spectroscopy of the Ultrafaint Dwarf Galaxies Eridanus IV and Centaurus I

Author:

Heiger M. E.ORCID,Li T. S.ORCID,Pace A. B.ORCID,Simon J. D.ORCID,Ji A. P.ORCID,Chiti A.ORCID,Bom C. R.ORCID,Carballo-Bello J. A.ORCID,Carlin J. L.ORCID,Cerny W.ORCID,Choi Y.ORCID,Drlica-Wagner A.ORCID,James D. J.ORCID,Martínez-Vázquez C. E.ORCID,Medina G. E.ORCID,Mutlu-Pakdil B.ORCID,Navabi M.ORCID,Noël N. E. D.ORCID,Sakowska J. D.ORCID,Stringfellow G. S.ORCID,

Abstract

Abstract We present a spectroscopic analysis of Eridanus IV (Eri IV) and Centaurus I (Cen I), two ultrafaint dwarf galaxies of the Milky Way. Using IMACS/Magellan spectroscopy, we identify 28 member stars of Eri IV and 34 member stars of Cen I. For Eri IV, we measure a systemic velocity of v sys = 31.5 1.2 + 1.3 km s 1 , and velocity dispersion σ v = 6.1 0.9 + 1.2 km s 1 . Additionally, we measure the metallicities of 16 member stars of Eri IV. We find a metallicity of [ Fe / H ] = 2.87 0.07 + 0.08 , and resolve a dispersion of σ [Fe/H]=0.20 ± 0.09. The mean metallicity is marginally lower than all other known ultrafaint dwarf galaxies, making it one of the most metal-poor galaxies discovered thus far. Eri IV also has a somewhat unusual right-skewed metallicity distribution. For Cen I, we find a velocity v sys = 44.9 ± 0.8 km s−1, and velocity dispersion σ v = 4.2 0.5 + 0.6 km s 1 . We measure the metallicities of 27 member stars of Cen I, and find a mean metallicity [Fe/H] = −2.57 ± 0.08, and metallicity dispersion σ [ Fe / H ] = 0.38 0.05 + 0.07 . We calculate the systemic proper motion, orbit, and the astrophysical J-factor for each system, the latter of which indicates that Eri IV is a good target for indirect dark matter detection. We also find no strong evidence for tidal stripping of Cen I or Eri IV. Overall, our measurements confirm that Eri IV and Cen I are dark-matter-dominated galaxies with properties largely consistent with other known ultrafaint dwarf galaxies. The low metallicity, right-skewed metallicity distribution, and high J-factor make Eri IV an especially interesting candidate for further follow-up.

Funder

Gouvernement du Canada ∣ Natural Sciences and Engineering Research Council of Canada

National Science Foundation

ANID ∣ Fondo Nacional de Desarrollo Científico y Tecnológico

DOE ∣ NNSA ∣ LDRD ∣ Fermilab

Publisher

American Astronomical Society

Subject

Space and Planetary Science,Astronomy and Astrophysics

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