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March 3, 2026The Astrophysical Journal3 citationsOpen Access

Hubble Space Telescope Imaging of Three Isolated Faint Dwarf Galaxies beyond the Local Group: Pavo, Corvus A, and Kamino

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BMBurçin Mutlu-PakdilMJMichael G. JonesDSDavid J. Sand

Key Points

  • The three isolated dwarf galaxies exhibit distinct star formation histories and structural properties.
  • Hubble Space Telescope data reaches 2-4 magnitudes below the tip of the red giant branch for accurate distance measurement.
  • Analysis shows Pavo and Kamino had continuous star formation, while Corvus A formed 60% of its stellar mass by 10 Gyr ago.
  • Findings highlight the diverse evolutionary pathways of isolated low-mass galaxies beyond the Local Group.

Abstract

Abstract We present new Hubble Space Telescope (HST) imaging of three recently discovered star-forming dwarf galaxies beyond the Local Group: Pavo, Corvus A, and Kamino. The discovery of Kamino is reported here for the first time. They rank among the most isolated faint dwarf galaxies known; hence they provide unique opportunities to study galaxy evolution at the smallest scales, free from the environmental effects of more massive galaxies. Our HST data reach ∼2–4 magnitudes below the tip of the red giant branch (TRGB) for each dwarf, allowing us to measure their distances, structural properties, and recent star formation histories (SFHs). All three galaxies contain a complex stellar population of young and old stars, and are typical of field galaxies in this mass regime ( M V = −10.62 ± 0.08 and D = 2.1 6 − 0.07 + 0.08 Mpc for Pavo, M V = −10.91 ± 0.10 and D = 3.34 ± 0.11 Mpc for Corvus A, and M V = −12.02 ± 0.12 and D = 6.5 0 − 0.11 + 0.15 Mpc for Kamino). Our HST-derived SFHs reveal differences among the three dwarfs: Pavo and Kamino show relatively steady, continuous star formation, while Corvus A formed ∼60% of its stellar mass by 10 Gyr ago. These results align with theoretical predictions of diverse evolutionary pathways for isolated low-mass galaxies.

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Cite This Study

Mutlu-Pakdil et al. (2026) studied this question.

synapsesocial.com/papers/69a75d35c6e9836116a26d82https://doi.org/10.3847/1538-4357/ae2e9d
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