Bibcode
Bellazzini, M.; Beccari, G.; Battaglia, G.; Martin, N.; Testa, V.; Ibata, R.; Correnti, M.; Cusano, F.; Sani, E.
Bibliographical reference
Astronomy and Astrophysics, Volume 575, id.A126, 24 pp.
Advertised on:
3
2015
Journal
Citations
20
Refereed citations
19
Description
We present an imaging survey that searches for the stellar counterparts
of recently discovered ultra-compact high-velocity H i clouds (UCHVC).
It has been proposed that these clouds are candidate mini-haloes in the
Local Group and its surroundings within a distance range of 0.25-2.0
Mpc. Using the Large Binocular Telescope we obtained wide-field (≃
23' × 23') g- and r-band images of the twenty-five most promising
and most compact clouds amongst the fifty-nine that have been
identified. Careful visual inspection of all the images does not reveal
any stellar counterpart that even slightly resembles Leo P, the only
local dwarf galaxy that was found as a counterpart to a previously
detected high-velocity cloud. Only a possible distant (D> 3.0 Mpc)
counterpart to HVC274.68+74.70-123 has been identified in our images.
The point source photometry in the central 17.3' × 7.7' chips
reaches r ≤ 26.5 and is expected to contain most of the stellar
counterparts to the UCHVCs. However, no obvious stellar over-density is
detected in any of our fields, in marked contrast to our comparison Leo
P field, in which the dwarf galaxy is detected at a
>30σ-significance level. Only HVC352.45+59.06+263 may be
associated with a weak over-density, whose nature cannot be ascertained
with our data. Sensitivity tests show that our survey would have
detected any dwarf galaxy dominated by an old stellar population, with
an integrated absolute magnitude of MV ≤ - 8.0 and a
half-light radius of rh ≤ 300 pc that lies within 1.5 Mpc
of us, thereby confirming that it is unlikely that the observed UCHVCs
are associated with the stellar counterparts typical of known Local
Group dwarf galaxies.
Based on data acquired using the Large Binocular Telescope (LBT). The
LBT is an international collaboration amongst institutions in the United
States, Italy, and Germany. LBT Corporation partners are The University
of Arizona on behalf of the Arizona university system; Istituto
Nazionale di Astrofisica, Italy; LBT Beteiligungsgesellschaft, Germany,
representing the Max-Planck Society, the Astrophysical Institute
Potsdam, and Heidelberg University; The Ohio State University; and The
Research Corporation, on behalf of The University of Notre Dame,
University of Minnesota, and University of Virginia.Appendices are
available in electronic form at http://www.aanda.org
Related projects
Galaxy Evolution in the Local Group
Galaxy formation and evolution is a fundamental Astrophysical problem. Its study requires “travelling back in time”, for which there are two complementary approaches. One is to analyse galaxy properties as a function of red-shift. Our team focuses on the other approach, called “Galactic Archaeology”. It is based on the determination of galaxy
Matteo
Monelli