This program is concerned with developing and verifying the validityof observational methods for constraining the properties of dark matter and dark energy in the universe. Excellent progress has been made in comparing observational projects involving weak gravitational lensing using both ground and space-based instruments, in further constraining the nature of dark matter via precise measures of its distribution in clusters of galaxies using strong gravitational lensing, in demonstrating the possible limitations of using distant supernovae in future dark energy missions, and in investigating the requirement for ground-based surveys of baryonic acoustic oscillations
Of all the mass in our Universe, 80% is thought to consist of a hypothetical and invis...
We model the expansion history of the Universe as a Gaussian process and find constraints on the dar...
Astronomical observations strongly suggest that the universe is mostly dark. Its two dominant compon...
AbstractThe observational results of the latest 15 to 20 years have stablished a standard model for ...
The program was concerned with developing and verifying the validity of observational methods for co...
We present parameter estimation forecasts for present and future 3D cosmic shear surveys. We demonst...
In this PhD Thesis, we present studies which aim at understanding and testing the fundamental assump...
I review the observational prospects to constrain the equation of state parameter of dark energy and...
One decade ago, the astrophysics community was shaken to its core with the announcement that the exp...
Dark matter and dark energy clearly emerged from recent cosmological surveys as key ingredients of t...
Strong gravitational lensing and stellar dynamics provide two complementary methods in the study of ...
I study cosmological structure formation for the dual purposes of understanding the role that physic...
Astro2010: The Astronomy and Astrophysics Decadal Survey, Science White Papers, no. 194The Cold Dark...
Dark matter and dark energy comprise over 90 % of the Universe. Dark matter has not been detected, c...
We review progress in understanding dark matter by astrophysics, and particularly via the effect of ...
Of all the mass in our Universe, 80% is thought to consist of a hypothetical and invis...
We model the expansion history of the Universe as a Gaussian process and find constraints on the dar...
Astronomical observations strongly suggest that the universe is mostly dark. Its two dominant compon...
AbstractThe observational results of the latest 15 to 20 years have stablished a standard model for ...
The program was concerned with developing and verifying the validity of observational methods for co...
We present parameter estimation forecasts for present and future 3D cosmic shear surveys. We demonst...
In this PhD Thesis, we present studies which aim at understanding and testing the fundamental assump...
I review the observational prospects to constrain the equation of state parameter of dark energy and...
One decade ago, the astrophysics community was shaken to its core with the announcement that the exp...
Dark matter and dark energy clearly emerged from recent cosmological surveys as key ingredients of t...
Strong gravitational lensing and stellar dynamics provide two complementary methods in the study of ...
I study cosmological structure formation for the dual purposes of understanding the role that physic...
Astro2010: The Astronomy and Astrophysics Decadal Survey, Science White Papers, no. 194The Cold Dark...
Dark matter and dark energy comprise over 90 % of the Universe. Dark matter has not been detected, c...
We review progress in understanding dark matter by astrophysics, and particularly via the effect of ...
Of all the mass in our Universe, 80% is thought to consist of a hypothetical and invis...
We model the expansion history of the Universe as a Gaussian process and find constraints on the dar...
Astronomical observations strongly suggest that the universe is mostly dark. Its two dominant compon...