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Mirage simulations of the massiv sample

Published online by Cambridge University Press:  09 February 2015

P. Amram
Affiliation:
LAM, Marseille (F), Email: [email protected]
V. Perret
Affiliation:
LAM, Marseille (F), Email: [email protected] U. Zurich, (Ch)
B. Epinat
Affiliation:
LAM, Marseille (F), Email: [email protected]
F. Bournaud
Affiliation:
CEA, SAp, AIM, Saclay(F)
T. Contini
Affiliation:
IRAP, Toulouse (F)
C. Divoy
Affiliation:
IRAP, Toulouse (F)
B. Garilli
Affiliation:
INAF-IASFBO, Bologna (I)
M. Kissler-Patig
Affiliation:
GEMINI, Hilo (USA)
O. Le Fevre
Affiliation:
LAM, Marseille (F), Email: [email protected]
C. Lopez-Sanjuan
Affiliation:
FEFCA, Teruel(E)
J. Moultaka
Affiliation:
IRAP, Toulouse (F)
L. Pairo
Affiliation:
INAF-IASFBO, Bologna (I)
E. Perez-Montero
Affiliation:
IAC, Granada(E)
J. Queyrel
Affiliation:
IRAP, Toulouse (F)
L. Tasca
Affiliation:
LAM, Marseille (F), Email: [email protected]
L. Tresse
Affiliation:
LAM, Marseille (F), Email: [email protected]
D. Vergani
Affiliation:
INAF-IASF, Milano (I).
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The MIRAGE sample (Merging & isolated high-redshift AMR galaxies; Perret 2014, PhD dissertation; Perret et al. 2014, AA 562, 1) has been built in order to understand the contribution of the merger processes to the mass assembly in the MASSIV (Mass Assembly Survey with SINFONI in VVDS, Contini et al. 2012, AA 539, 91) sample. It consists of a sample of idealized simulations based on the RAMSES code; the initial conditions were designed to reproduce the physical properties of the most gas-rich young galaxies. The sample is composed of 20 simulations of mergers exploring the initial parameters of mass and orientation of the disks with a spatial resolution reaching 7 parsecs.

Type
Contributed Papers
Copyright
Copyright © International Astronomical Union 2015