We present a machine learning framework to simulate realistic galaxies for the Euclid Survey. The proposed method combines a control on galaxy shape parameters offered by analytic models with realistic surface brightness distributions learned from real Hubble Space Telescope observations by deep generative models. We simulate a galaxy field of $0.4\,\rm{deg}^2$ as it will be seen by the Euclid visible imager VIS and show that galaxy structural parameters are recovered with similar accuracy as for pure analytic Sérsic profiles. Based on these simulations, we estimate that the Euclid Wide Survey will be able to resolve the internal morphological structure of galaxies down to a surface brightness of $22.5\,\rm{mag}\,\rm{arcsec}^{-2}$, and $24....
We present a machine learning framework to simulate realistic galaxies for the Euclid Survey, produc...
We present a machine learning framework to simulate realistic galaxies for the Euclid Survey, produc...
We present a machine learning framework to simulate realistic galaxies for the Euclid Survey, produc...
We present a machine learning framework to simulate realistic galaxies for the Euclid Survey. The pr...
International audienceWe present a machine learning framework to simulate realistic galaxies for the...
We present a machine learning framework to simulate realistic galaxies for the Euclid Survey, produc...
We present a machine learning framework to simulate realistic galaxies for the Euclid Survey, produc...
We present a machine learning framework to simulate realistic galaxies for the Euclid Survey, produc...
We present a machine learning framework to simulate realistic galaxies for the Euclid Survey, produc...
We present a machine learning framework to simulate realistic galaxies for the Euclid Survey, produc...
We present a machine learning framework to simulate realistic galaxies for the Euclid Survey. The pr...
International audienceWe present a machine learning framework to simulate realistic galaxies for the...
We present a machine learning framework to simulate realistic galaxies for the Euclid Survey, produc...
We present a machine learning framework to simulate realistic galaxies for the Euclid Survey, produc...
We present a machine learning framework to simulate realistic galaxies for the Euclid Survey, produc...
We present a machine learning framework to simulate realistic galaxies for the Euclid Survey, produc...
We present a machine learning framework to simulate realistic galaxies for the Euclid Survey, produc...