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Dark Energy Constraints from the Cosmic Age and Supernova

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arxiv astro-ph/0404224 v3 pith:KJ4XCP4G submitted 2004-04-11 astro-ph hep-phhep-th

classification astro-phhep-phhep-th
keywords darkenergyequationstatecosmicsupernovadatalimit
verification ladder T0 review T1 audit T2 compute T3 formal

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abstract

Using the low limit of cosmic ages from globular cluster and the white dwarfs: $t_0 > 12$Gyr, together with recent new high redshift supernova observations from the HST/GOODS program and previous supernova data, we give a considerable estimation of the equation of state for dark energy, with uniform priors as weak as $0.2<\Omega_m<0.4$ or $0.1<\Omega_m h^2<0.16$. We find cosmic age limit plays a significant role in lowering the upper bound on the variation amplitude of dark energy equation of state. We propose in this paper a new scenario of dark energy dubbed Quintom, which gives rise to the equation of state larger than -1 in the past and less than -1 today, satisfying current observations. In addition we've also considered the implications of recent X-ray gas mass fraction data on dark energy, which favors a negative running of the equation of state.

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Cited by 20 Pith papers

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