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The ISLAndS project II: The Lifetime Star Formation Histories of Six Andromeda dSphs | Evan D. Skillman
; Matteo Monelli
; Daniel R. Weisz
; Sebastian L. Hidalgo
; Antonio Aparicio
; Edouard J. Bernard
; Michael Boylan-Kolchin
; Santi Cassisi
; Andrew A. Cole
; Andrew E. Dolphin
; Henry C. Ferguson
; Carme Gallart
; Mike J. Irwin
; Nicolas F. Martin
; Clara E. Martinez-Vazquez
; Lucio Mayer
; Alan W. McConnachie
; Kristen B. W. McQuinn
; Julio F. Navarro
; Peter B. Stetson
; | Date: |
3 Jun 2016 | Abstract: | The Initial Star formation and Lifetimes of Andromeda Satellites (ISLAndS)
project uses Hubble Space Telescope imaging to study a representative sample of
six Andromeda dSph satellite companion galaxies. The main goal of the program
is to determine whether the star formation histories (SFHs) of the Andromeda
dSph satellites demonstrate significant statistical differences from those of
the Milky Way, which may be attributable to the different properties of their
local environments. Our observations reach the oldest main sequence turn-offs,
allowing a time resolution at the oldest ages of ~ 1 Gyr, which is comparable
to the best achievable resolution in the MW satellites. We find that the six
dSphs present a variety of SFHs that are not strictly correlated with
luminosity or present distance from M31. Specifically, we find a significant
range in quenching times (lookback times from 9 to 6 Gyr), but with all
quenching times more than ~ 6 Gyr ago. In agreement with observations of Milky
Way companions of similar mass, there is no evidence of complete quenching of
star formation by the cosmic UV background responsible for reionization, but
the possibility of a degree of quenching at reionization cannot be ruled out.
We do not find significant differences between the SFHs of the three members of
the vast, thin plane of satellites and the three off-plane dSphs. The primary
difference between the SFHs of the ISLAndS dSphs and Milky Way dSph companions
of similar luminosities and host distances is the absence of very late
quenching (< 5 Gyr ago) dSphs in the ISLAndS sample. Thus, models that can
reproduce satellite populations with and without late quenching satellites will
be of extreme interest. | Source: | arXiv, 1606.1207 | Services: | Forum | Review | PDF | Favorites |
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