The interstellar medium in Andromeda's dwarf spheroidal galaxies: II. Multi-phase gas content and ISM conditions
Ilse De Looze, Maarten Baes, Diane Cormier, Hiroyuki Kaneko, Nario, Kuno, Lisa Young, George J. Bendo, Mederic Boquien, Jacopo Fritz, Gianfranco, Gentile, Robert C. Kennicutt, Suzanne C. Madden, Matthew W.L. Smith and, Christine D. Wilson

TL;DR
This study inventories the multi-phase interstellar medium in three low-metallicity dwarf spheroidal galaxies of the Local Group, revealing significant gas deficiency likely caused by galactic winds and environmental interactions.
Contribution
It provides new measurements of molecular and atomic gas content in NGC185 and NGC205, and compares observed gas masses and ratios to theoretical models, highlighting gas removal processes.
Findings
Gas masses are lower than expected from simple models.
Gas-to-dust ratios are significantly below predictions.
Galactic winds and environmental effects likely cause gas loss.
Abstract
We make an inventory of the interstellar medium material in three low-metallicity dwarf spheroidal galaxies of the Local Group (NGC147, NGC185 and NGC205). Ancillary HI, CO, Spitzer IRS spectra, H{\alpha} and X-ray observations are combined to trace the atomic, cold and warm molecular, ionised and hot gas phases. We present new Nobeyama CO(1-0) observations and Herschel SPIRE FTS [CI] observations of NGC205 to revise its molecular gas content. We derive total gas masses of M_gas = 1.9-5.5x10^5 Msun for NGC185 and M_gas = 8.6-25.0x10^5 Msun for NGC205. Non-detections combine to an upper limit on the gas mass of M_gas =< 0.3-2.2x10^5 Msun for NGC147. The observed gas reservoirs are significantly lower compared to the expected gas masses based on a simple closed-box model that accounts for the gas mass returned by planetary nebulae and supernovae. The gas-to-dust mass ratios GDR~37-107…
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