Gravitational lensing constraint on the cosmic equation of state
arXiv:astro-ph/0105551 · doi:10.1142/S0218271803003062
Abstract
Recent redshift-distance measurements of Type Ia supernovae (SNe Ia) at cosmological distances suggest that two-third of the energy density of the universe is dominated by dark energy component with an effective negative pressure. This dark energy component is described by the equation of state . We use gravitational lensing statistics to constrain the equation of state of this dark energy. We use , image separation distribution function of lensed quasars, as a tool to probe . We find that for the observed range of , should lie between in order to have five lensed quasars in a sample of 867 optical quasars. This limit is highly sensitive to lens and Schechter parameters and evolution of galaxies.
Modified results and inclusion of calculations with new set of parameters
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Cited by in corpus (8)
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- Constraints on Chaplygin quartessence from the CLASS gravitational lens statistics and supernova data
- Constraints on Cardassian Scenario from the Expansion Turnaround Redshift and the Sunyaev-Zeldovich/X-ray Data
- Determining the equation of state of dark energy from angular size of compact radio sources and X-ray gas mass fraction of galaxy clusters
- Dark Energy and the Statistical Study of the Observed Image Separations of the Multiply Imaged Systems in the CLASS Statistical Sample
- Current lookback time-redshift bounds on dark energy
- Constraints on a quintessence model from gravitational lensing statistics
- Analytical considerations about the cosmological constant and dark energy