Cooray Asantha, Huterer Dragan, Holz Daniel E
Center for Cosmology, Department of Physics and Astronomy, University of California, Irvine, California 92697, USA.
Phys Rev Lett. 2006 Jan 20;96(2):021301. doi: 10.1103/PhysRevLett.96.021301. Epub 2006 Jan 18.
While luminosity distances from type Ia supernovae (SNe) are a powerful probe of cosmology, the accuracy with which these distances can be measured is limited by cosmic magnification due to gravitational lensing by the intervening large-scale structure. Spatial clustering of foreground mass leads to correlated errors in SNe distances. By including the full covariance matrix of SNe, we show that future wide-field surveys will remain largely unaffected by lensing correlations. However, "pencil beam" surveys, and those with narrow (but possibly long) fields of view, can be strongly affected. For a survey with 30 arcmin mean separation between SNe, lensing covariance leads to a approximately 45% increase in the expected errors in dark energy parameters.
虽然Ia型超新星(SNe)的光度距离是宇宙学的有力探测手段,但这些距离的测量精度受到中间大尺度结构引力透镜造成的宇宙放大效应的限制。前景质量的空间聚类导致SNe距离出现相关误差。通过纳入SNe的完整协方差矩阵,我们表明未来的宽视场巡天将在很大程度上不受透镜相关性的影响。然而,“笔状束”巡天以及那些视场狭窄(但可能很长)的巡天可能会受到强烈影响。对于SNe平均间距为30角分的巡天,透镜协方差会导致暗能量参数的预期误差增加约45%。