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Supernova Cosmology: Legacy and Future

Goobar, A. and Leibundgut, B.

Keywords

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Abstract

The discovery of dark energy by the first generation of high-redshift supernova surveys has generated enormous interest beyond cosmology and has dramatic implications for fundamental physics. Distance measurements using supernova explosions are the most direct probes of the expansion history of the Universe, making them extremely useful tools to study the cosmic fabric and the properties of gravity at the largest scales. The past decade has seen the confirmation of the original results. Type Ia supernovae are among the leading techniques to obtain high-precision measurements of the dark energy equation of state parameter, and in the near future, its time dependence. The success of these efforts depends on our ability to understand a large number of effects, mostly of astrophysical nature, influencing the observed flux at Earth. The frontier now lies in understanding if the observed phenomenon is due to vacuum energy, albeit its unnatural density, or some exotic new physics. Future surveys will address the systematic effects with improved calibration procedures and provide thousands of supernovae for detailed studies.

Information

Published
2011 as article
Annual Review of Nuclear and Particle Science, 61 - page(s): 251-279
Contact
Dr. Bruno Leibundgut
Type
experimental work
Links
pdf
ads
adsabs.harvard.edu/a…
Related to the research area(s):
E
e-Print
1102.1431

Technische Universitaet Muenchen
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