Constraining Dark Energy From Splitting Angle Statistic of Strong Gravitational Lenses
arXiv:0708.2164 · doi:10.1088/0004-637X/694/2/1402
Abstract
Utilizing the CLASS statistical sample, we investigate the constraint of the splitting angle statistic of strong gravitational lenses(SGL) on the equation-of-state parameter of the dark energy in the flat cold dark matter cosmology. Through the comoving number density of dark halos described by Press-Schechter theory, dark energy affects the efficiency with which dark-matter concentrations produce strong lensing signals. The constraints on both constant and time-varying from the SGL splitting angle statistic are consistently obtained by adopting a two model combined mechanism of dark halo density profile matched at the mass scale . Our main observations are: (a) the resulting model parameter is found to be for both constant and time-varying , which is larger than obtained in literatures; (b) the fitting results for the constant are found to be and for the source redshift distributions of the Gaussian models and respectively, which are consistent with the at 95% C.L; (c) the time-varying is found to be for : and for and respectively.
30 pages, 10 figures, references added, improved version to be published in ApJ