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  4. GEAR: A Window on the World of Dwarf Galaxies
 
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conference paper

GEAR: A Window on the World of Dwarf Galaxies

Revaz, Y.  
•
Jablonka, P.  
Capuzzodolcetta, R.
•
Limongi, M.
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2012
Advances In Computational Astrophysics: Methods, Tools And Outcomes
Conference on Advances in Computational Astrophysics - Methods, Tools, and Outcomes

GEAR is a new fully parallel chemodynamical Tree/SPH code designed to study the formation and evolution of galaxies. GEAR treats the complex physics of baryons, such as radiative cooling and feedback, star formation, and chemical evolution. It has been fully characterized by performing hundreds of simulations, including convergence tests with the spatial resolution varying from 100 pc down to 12 pc. We demonstrate here the performance of GEAR in the context of the evolution of the dwarf spheroidal galaxies. Our models, combined with the stellar chemical abundances derived from high resolution spectroscopy in a sample of dSphs (The ESO Large Programme DART), bring crucial clues on otherwise poorly constrained physical parameters, such as the supernova feedback, star formation efficiency or galaxy mass profiles. Moreover, these new simulations allow to predict the number of stars formed in a given dark matter halo mass, providing a crucial test for cosmology.

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Type
conference paper
Web of Science ID

WOS:000308675400023

Author(s)
Revaz, Y.  
•
Jablonka, P.  
Editors
Capuzzodolcetta, R.
•
Limongi, M.
•
Tornambe, A.
Date Issued

2012

Publisher

Astronomical Soc Pacific

Publisher place

San Francisco

Published in
Advances In Computational Astrophysics: Methods, Tools And Outcomes
ISBN of the book

978-1-58381-788-9

Total of pages

5

Series title/Series vol.

Astronomical Society of the Pacific Conference Series

Volume

453

Start page

141

End page

145

Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LASTRO  
Event name
Conference on Advances in Computational Astrophysics - Methods, Tools, and Outcomes
Available on Infoscience
February 27, 2013
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/89929
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