Gravitationally lensed quasars and supernovae in future wide-field optical imaging surveys

被引:407
|
作者
Oguri, Masamune [1 ,2 ]
Marshall, Philip J. [2 ,3 ]
机构
[1] Natl Inst Nat Sci, Natl Astron Observ Japan, Div Theoret Astron, Mitaka, Tokyo 1818588, Japan
[2] Stanford Univ, Kavli Inst Particle Astrophys & Cosmol, Menlo Pk, CA 94025 USA
[3] Univ Calif Santa Barbara, Dept Phys, Santa Barbara, CA 93601 USA
基金
美国国家科学基金会;
关键词
gravitational lensing: strong; cosmological parameters; cosmology: theory; DIGITAL-SKY-SURVEY; EARLY-TYPE GALAXIES; HUBBLE-SPACE-TELESCOPE; HIGH-REDSHIFT SUPERNOVAE; STAR-FORMATION HISTORY; 3RD DATA RELEASE; TIME DELAYS; IA SUPERNOVAE; COSMOLOGICAL PARAMETERS; DARK ENERGY;
D O I
10.1111/j.1365-2966.2010.16639.x
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
Cadenced optical imaging surveys in the next decade will be capable of detecting time-varying galaxy-scale strong gravitational lenses in large numbers, increasing the size of the statistically well-defined samples of multiply imaged quasars by two orders of magnitude, and discovering the first strongly lensed supernovae. We carry out a detailed calculation of the likely yields of several planned surveys, using realistic distributions for the lens and source properties and taking magnification bias and image configuration detectability into account. We find that upcoming wide-field synoptic surveys should detect several thousand lensed quasars. In particular, the Large Synoptic Survey Telescope (LSST) should find more than some 8000 lensed quasars, some 3000 of which will have well-measured time delays. The LSST should also find some 130 lensed supernovae during the 10-yr survey duration, which is compared with similar to 15 lensed supernovae predicted to be found by a deep, space-based supernova survey done by the Joint Dark Energy Mission. We compute the quad fraction in each survey, predicting it to be similar to 15 per cent for the lensed quasars and similar to 30 per cent for the lensed supernovae. Generating a mock catalogue of around 1500 well-observed double-image lenses, as could be derived from the LSST survey, we compute the available precision on the Hubble constant and the dark energy equation parameters for the time-delay distance experiment (assuming priors from Planck): the predicted marginalized 68 per cent confidence intervals are Sigma(w(0)) = 0.15, Sigma(w(a)) = 0.41 and Sigma(h) = 0.017. While this is encouraging in the sense that these uncertainties are only 50 per cent larger than those predicted for a space-based Type Ia supernova sample, we show how the dark energy figure of merit degrades with decreasing knowledge of the lens mass distribution.
引用
收藏
页码:2579 / 2593
页数:15
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