We derive expressions, in terms of ‘polar shapelets’, for the image distortion operations associated with weak gravitational lensing. Shear causes galaxy shapes to become elongated, and is sensitive to the second derivative of the projected gravitational potential along their line of sight; flexion bends galaxy shapes into arcs, and is sensitive to the third derivative. Polar shapelets provide a natural representation, in which both shear and flexion transformations are compact. Through this tool, we understand progress in several weak lensing methods. We then exploit various symmetries of shapelets to construct a range of shear estimators with useful properties. Through an analogous investigation, we also explore several flexion estimators...
In this paper, we present results from the weak-lensing shape measurement GRavitational lEnsing Accu...
It is now routine to measure the weak gravitational lensing shear signal from the mean ellipticity o...
We present first results from the third GRavitational lEnsing Accuracy Testing (GREAT3) challenge, t...
The measurement of weak gravitational lensing is currently limited to a precision of ~ 10% by instab...
Dedicated ‘Stage IV’ observatories will soon observe the entire extragalactic sky, to measure the ‘c...
We present a simulation analysis of weak gravitational lensing flexion and shear measurement using s...
We have developed a new technique for weak lensing analysis, specifically designed to correct accura...
In weak gravitational lensing, the image distortion caused by shear measures the projected tidal gra...
Gravitational flexion, caused by derivatives of the gravitational tidal field, is potentially im-por...
The measurement of weak gravitational lensing is currently limited to a precision of ~10% by instabi...
© 2015 Dr. Catherine Odelia de Burgh-DayThis thesis develops and tests a new technique, called Direc...
Flexion-based weak gravitational lensing analysis is proving to be a useful adjunct to traditional s...
The Shear Testing Programme (STEP) is a collaborative project to improve the accuracy and reliabilit...
Current theories of structure formation predict specific density profiles of galaxy dark matter halo...
In this paper, we present results from the weak-lensing shape measurement GRavitational lEnsing Accu...
In this paper, we present results from the weak-lensing shape measurement GRavitational lEnsing Accu...
It is now routine to measure the weak gravitational lensing shear signal from the mean ellipticity o...
We present first results from the third GRavitational lEnsing Accuracy Testing (GREAT3) challenge, t...
The measurement of weak gravitational lensing is currently limited to a precision of ~ 10% by instab...
Dedicated ‘Stage IV’ observatories will soon observe the entire extragalactic sky, to measure the ‘c...
We present a simulation analysis of weak gravitational lensing flexion and shear measurement using s...
We have developed a new technique for weak lensing analysis, specifically designed to correct accura...
In weak gravitational lensing, the image distortion caused by shear measures the projected tidal gra...
Gravitational flexion, caused by derivatives of the gravitational tidal field, is potentially im-por...
The measurement of weak gravitational lensing is currently limited to a precision of ~10% by instabi...
© 2015 Dr. Catherine Odelia de Burgh-DayThis thesis develops and tests a new technique, called Direc...
Flexion-based weak gravitational lensing analysis is proving to be a useful adjunct to traditional s...
The Shear Testing Programme (STEP) is a collaborative project to improve the accuracy and reliabilit...
Current theories of structure formation predict specific density profiles of galaxy dark matter halo...
In this paper, we present results from the weak-lensing shape measurement GRavitational lEnsing Accu...
In this paper, we present results from the weak-lensing shape measurement GRavitational lEnsing Accu...
It is now routine to measure the weak gravitational lensing shear signal from the mean ellipticity o...
We present first results from the third GRavitational lEnsing Accuracy Testing (GREAT3) challenge, t...