Accurate shape measurements are essential to infer cosmological parameters from large area weak gravitational lensing studies. The compact diffraction-limited point-spread function (PSF) in space-based observations is greatly beneficial, but its chromaticity for a broad band observation can lead to new subtle effects that could hitherto be ignored: the PSF of a galaxy is no longer uniquely defined and spatial variations in the colours of galaxies result in biases in the inferred lensing signal. Taking Euclid as a reference, we show that this colourgradient bias (CG bias) can be quantified with high accuracy using available multi-colour Hubble Space Telescope (HST) data. In particular we study how noise in the HST observations might impact s...
Weak lensing by large-scale structure is an invaluable cosmological tool given that most of the ener...
Aims. With the next generation of large surveys coming to the stage of observational cosmology soon,...
Dedicated ‘Stage IV’ observatories will soon observe the entire extragalactic sky, to measure the ‘c...
The spatial variation of the colour of a galaxy may introduce a bias in the measurement of its shape...
The spatial variation of the colour of a galaxy may introduce a bias in the measurement of its shape...
Cosmic shear has been identified as the method with the most potential to constrain dark energy. To ...
Weak gravitational lensing has the potential to constrain cosmological parameters to high precision...
PhD thesis submitted to the University of Manchester, School of Physics and Astronomy, August 2017. ...
Cosmic shear requires high precision measurement of galaxy shapes in the presence of the observation...
Context. Stage IV weak lensing experiments will offer more than an order of magnitude leap in precis...
We present first results from the third GRavitational lEnsing Accuracy Testing (GREAT3) challenge, t...
We present first results from the third GRavitational lEnsing Accuracy Testing (GREAT3) challenge, t...
Cosmic shear requires high precision measurement of galaxy shapes in the presence of the observatio...
Weak lensing by large-scale structure is an invaluable cosmological tool given that most of the ener...
Aims. With the next generation of large surveys coming to the stage of observational cosmology soon,...
Dedicated ‘Stage IV’ observatories will soon observe the entire extragalactic sky, to measure the ‘c...
The spatial variation of the colour of a galaxy may introduce a bias in the measurement of its shape...
The spatial variation of the colour of a galaxy may introduce a bias in the measurement of its shape...
Cosmic shear has been identified as the method with the most potential to constrain dark energy. To ...
Weak gravitational lensing has the potential to constrain cosmological parameters to high precision...
PhD thesis submitted to the University of Manchester, School of Physics and Astronomy, August 2017. ...
Cosmic shear requires high precision measurement of galaxy shapes in the presence of the observation...
Context. Stage IV weak lensing experiments will offer more than an order of magnitude leap in precis...
We present first results from the third GRavitational lEnsing Accuracy Testing (GREAT3) challenge, t...
We present first results from the third GRavitational lEnsing Accuracy Testing (GREAT3) challenge, t...
Cosmic shear requires high precision measurement of galaxy shapes in the presence of the observatio...
Weak lensing by large-scale structure is an invaluable cosmological tool given that most of the ener...
Aims. With the next generation of large surveys coming to the stage of observational cosmology soon,...
Dedicated ‘Stage IV’ observatories will soon observe the entire extragalactic sky, to measure the ‘c...