Interpreting observations of distant galaxies in terms of constraints on physical parameters such as stellarmass (M star), star formation rate (SFR) and dust optical depth ((tau) over cap (V)) -requires spectral synthesis modelling. We analyse the reliability of these physical parameters as determined under commonly adopted 'classical' assumptions: star formation histories assumed to be exponentially declining functions of time, a simple dust law and no emission-line contribution. Improved modelling techniques and data quality now allow us to use a more sophisticated approach, including realistic star formation histories, combined with modern prescriptions for dust attenuation and nebular emission. We present a Bayesian analysis of the spec...
International audienceMeasuring the build-up of stellar mass is one of the main objectives of studie...
Received; accepted Aims. Our knowledge of the cosmic mass assembly relies on measurements of star fo...
19 pages, 28 figures, Monthly Notices of the Royal Astronomical Society in pressInternational audien...
Interpreting observations of distant galaxies in terms of constraints on physical parameters such as...
Interpreting observations of distant galaxies in terms of constraints on physical parameters –...
International audienceWe present a new approach to constrain galaxy physical parameters from the com...
We compare multi-wavelength star formation rate (SFR) indicators out to z ~ 3 in the GOODS-South fie...
The relation between the star-formation Rate and stellar mass (M-star) of galaxies represents a fund...
We constrain the stellar population properties of a sample of 52 massive galaxies-with stellar mass ...
Aims. Our knowledge of the cosmic mass assembly relies on measurements of star formation rates (SFRs...
International audienceAims. Our knowledge of the cosmic mass assembly relies on measurements of star...
International audienceWe assemble a sample of 3258 low-redshift galaxies from the Sloan Digital Sky ...
International audienceWe present a method to self-consistently propagate stellar-mass [M⋆=log(M/M⊙)]...
We present results on the star formation rate (SFR) versus stellar mass (M∗) relation (i.e., the "ma...
International audienceMeasuring the build-up of stellar mass is one of the main objectives of studie...
Received; accepted Aims. Our knowledge of the cosmic mass assembly relies on measurements of star fo...
19 pages, 28 figures, Monthly Notices of the Royal Astronomical Society in pressInternational audien...
Interpreting observations of distant galaxies in terms of constraints on physical parameters such as...
Interpreting observations of distant galaxies in terms of constraints on physical parameters –...
International audienceWe present a new approach to constrain galaxy physical parameters from the com...
We compare multi-wavelength star formation rate (SFR) indicators out to z ~ 3 in the GOODS-South fie...
The relation between the star-formation Rate and stellar mass (M-star) of galaxies represents a fund...
We constrain the stellar population properties of a sample of 52 massive galaxies-with stellar mass ...
Aims. Our knowledge of the cosmic mass assembly relies on measurements of star formation rates (SFRs...
International audienceAims. Our knowledge of the cosmic mass assembly relies on measurements of star...
International audienceWe assemble a sample of 3258 low-redshift galaxies from the Sloan Digital Sky ...
International audienceWe present a method to self-consistently propagate stellar-mass [M⋆=log(M/M⊙)]...
We present results on the star formation rate (SFR) versus stellar mass (M∗) relation (i.e., the "ma...
International audienceMeasuring the build-up of stellar mass is one of the main objectives of studie...
Received; accepted Aims. Our knowledge of the cosmic mass assembly relies on measurements of star fo...
19 pages, 28 figures, Monthly Notices of the Royal Astronomical Society in pressInternational audien...