International audienceContext. Galaxies in dense environments are subject to interactions and mechanisms that directly affect their evolution by lowering their gas fractions and consequently reducing their star-forming capacity earlier than their isolated counterparts.Aims. The aim of our project is to get new insights into the role of environment in the stellar and baryonic content of galaxies using a kinematic approach, through the study of the Tully-Fisher relation (TFR).Methods. We study a sample of galaxies in eight groups, over-dense by a factor larger than 25 with respect to the average projected density, spanning a redshift range of 0.5 < z < 0.8 and located in ten pointings of the MAGIC MUSE Guaranteed Time Observations program. We...
International audienceContext. The evolution of galaxies is influenced by many physical processes, w...
Context. Using the multi-integral-field spectrograph GIRAFFE at VLT, we previsouly derived the stel...
International audienceContext. The evolution of galaxies is influenced by many physical processes, w...
International audienceContext. Galaxies in dense environments are subject to interactions and mechan...
Context. Galaxies in dense environments are subject to interactions and mechanisms that directly aff...
Galaxies form and evolve in different environments, arranged at large scales, in structures shaped b...
We measure the relation between galaxy luminosity and disk circular velocity (the Tully-Fisher [TF] ...
In this thesis we use the Tully-Fisher relation (TFR), the correlation between a galaxy's luminosity...
We study the H iK-band Tully-Fisher relation and the baryonic Tully-Fisher relation for a sample of ...
We explore the Tully-Fisher relation over five decades in stellar mass ingalaxies with circular velo...
International audienceWe study the H iK-band Tully-Fisher relation and the baryonic Tully-Fisher rel...
We have measured maximum rotation velocities (Vrot) for a sample of 111 emission-line galaxies with ...
I investigate the Baryonic Tully-Fisher relation for a sample of galaxies with extended 21 cm rotati...
We study the H iK-band Tully-Fisher relation and the baryonic Tully-Fisher relation for a sample of ...
Aims. The relationship between baryonic and dark components in galaxies varies with the environment ...
International audienceContext. The evolution of galaxies is influenced by many physical processes, w...
Context. Using the multi-integral-field spectrograph GIRAFFE at VLT, we previsouly derived the stel...
International audienceContext. The evolution of galaxies is influenced by many physical processes, w...
International audienceContext. Galaxies in dense environments are subject to interactions and mechan...
Context. Galaxies in dense environments are subject to interactions and mechanisms that directly aff...
Galaxies form and evolve in different environments, arranged at large scales, in structures shaped b...
We measure the relation between galaxy luminosity and disk circular velocity (the Tully-Fisher [TF] ...
In this thesis we use the Tully-Fisher relation (TFR), the correlation between a galaxy's luminosity...
We study the H iK-band Tully-Fisher relation and the baryonic Tully-Fisher relation for a sample of ...
We explore the Tully-Fisher relation over five decades in stellar mass ingalaxies with circular velo...
International audienceWe study the H iK-band Tully-Fisher relation and the baryonic Tully-Fisher rel...
We have measured maximum rotation velocities (Vrot) for a sample of 111 emission-line galaxies with ...
I investigate the Baryonic Tully-Fisher relation for a sample of galaxies with extended 21 cm rotati...
We study the H iK-band Tully-Fisher relation and the baryonic Tully-Fisher relation for a sample of ...
Aims. The relationship between baryonic and dark components in galaxies varies with the environment ...
International audienceContext. The evolution of galaxies is influenced by many physical processes, w...
Context. Using the multi-integral-field spectrograph GIRAFFE at VLT, we previsouly derived the stel...
International audienceContext. The evolution of galaxies is influenced by many physical processes, w...