Astronomical observations suggest that today's Universe is dominated by a dark energy of unknown physical origin. One of the most notable results obtained from many models is that dark energy should cause the expansion of the Universe to accelerate: but the expansion rate as a function of time has proved very difficult to measure directly. We present a new determination of the cosmic expansion history by combining distant supernovae observations with a geometrical analysis of large-scale galaxy clustering within the WiggleZ Dark Energy Survey, using the Alcock-Paczynski test to measure the distortion of standard spheres. Our result constitutes a robust and non-parametric measurement of the Hubble expansion rate as a function of time, which ...
One PDF file including both main paper and Supplementary Information (28 pages, 3+2 figures). Publis...
Supernova observations show that the expansion of the universe has been speeding up. This unexpected...
bservations of distant supernovae indicate that the Universe is now in a phase of accelerated expans...
Astronomical observations suggest that today’s Universe is dominated by a dark energy of unknown phy...
The WiggleZ Dark Energy Survey on the Anglo-Australian Telescope has measured redshifts for 220,000 ...
We present precise measurements of the growth rate of cosmic structure for the redshift range 0.1 < ...
We present precise measurements of the growth rate of cosmic structure for the redshift range 0.1 < ...
The discovery of the accelerating expansion of the Universe a decade ago established a new paradigm ...
We present cosmological results from the nearly-completed WiggleZ Dark Energy Survey at the AAT. We ...
The growth history of large-scale structure in the Universe is a powerful probe of the cosmological ...
The accelerating expansion of the universe, attributed to 'dark energy', has no accepted theoretical...
We present a method for measuring the cosmic expansion history H(z) in uncorrelated redshift bins, a...
The accelerating expansion of the universe is the most surprising cosmological discovery in many dec...
The accelerating expansion of the universe, attributed to "dark energy", has no accepted theoretical...
Measurements of the growth rate of structure f at different redshifts can discriminate the origin of...
One PDF file including both main paper and Supplementary Information (28 pages, 3+2 figures). Publis...
Supernova observations show that the expansion of the universe has been speeding up. This unexpected...
bservations of distant supernovae indicate that the Universe is now in a phase of accelerated expans...
Astronomical observations suggest that today’s Universe is dominated by a dark energy of unknown phy...
The WiggleZ Dark Energy Survey on the Anglo-Australian Telescope has measured redshifts for 220,000 ...
We present precise measurements of the growth rate of cosmic structure for the redshift range 0.1 < ...
We present precise measurements of the growth rate of cosmic structure for the redshift range 0.1 < ...
The discovery of the accelerating expansion of the Universe a decade ago established a new paradigm ...
We present cosmological results from the nearly-completed WiggleZ Dark Energy Survey at the AAT. We ...
The growth history of large-scale structure in the Universe is a powerful probe of the cosmological ...
The accelerating expansion of the universe, attributed to 'dark energy', has no accepted theoretical...
We present a method for measuring the cosmic expansion history H(z) in uncorrelated redshift bins, a...
The accelerating expansion of the universe is the most surprising cosmological discovery in many dec...
The accelerating expansion of the universe, attributed to "dark energy", has no accepted theoretical...
Measurements of the growth rate of structure f at different redshifts can discriminate the origin of...
One PDF file including both main paper and Supplementary Information (28 pages, 3+2 figures). Publis...
Supernova observations show that the expansion of the universe has been speeding up. This unexpected...
bservations of distant supernovae indicate that the Universe is now in a phase of accelerated expans...