Department of Physics, Simon Fraser University, Burnaby, British Columbia, V5A 1S6, Canada.
Phys Rev Lett. 2009 Dec 11;103(24):241301. doi: 10.1103/PhysRevLett.103.241301. Epub 2009 Dec 8.
Future weak lensing surveys will map the evolution of matter perturbations and gravitational potentials, yielding a new test of general relativity on cosmic scales. They will probe the relations between matter overdensities, local curvature, and the Newtonian potential. These relations can be modified in alternative gravity theories or by the effects of massive neutrinos or exotic dark energy fluids. We introduce two functions of time and scale which account for any such modifications in the linear regime. We use a principal component analysis to find the eigenmodes of these functions that cosmological data will constrain. The number of constrained modes gives a model-independent forecast of how many parameters describing deviations from general relativity could be constrained, along with w(z). The modes' scale and time dependence tell us which theoretical models will be better tested.
未来的弱引力透镜调查将绘制物质扰动和引力势的演化图,从而对宇宙尺度上的广义相对论进行新的检验。它们将探测物质过密、局部曲率和牛顿势之间的关系。这些关系可以在替代引力理论中或在重中微子或奇异暗能量流体的影响下被修改。我们引入了两个时间和尺度的函数,以在线性区域中解释任何此类修改。我们使用主成分分析来找到这些函数的本征模式,宇宙学数据将对其进行约束。所约束的模式数量给出了一个无模型的预测,即描述与广义相对论偏差的参数有多少可以被约束,以及 w(z)。模式的尺度和时间依赖性告诉我们哪些理论模型将得到更好的检验。