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Weak Lensing and Gravity Theories

机译:弱镜头和重力理论

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We present the theory of weak gravitational lensing in cosmologies with generalized gravity, described in the Lagrangian by a generic function depending on the Ricci scalar and a non-minimally coupled scalar field.We work out the generalized Poisson equations relating the dynamics of the fluctuating components to the two gauge invariant scalar gravitational potentials, fixing the new contributions from the modified background expansion and fluctuationsWe show how the lensing observables are affected by the cosmic expansion as well as by the presence of the anisotropic stress, which is non-null at the linear level both in scalar-tensor gravity and in theories where the gravitational Lagrangian term features a non-minimal dependence on the Ricci scalar. We derive the generalized expressions for the convergence power spectrum, and illustrate phenomenologically the new effects in Extended Quintessence scenarios, where the scalar field coupled to gravity plays the role of the dark energy.
机译:我们以广义重力呈现彩色重力透镜的弱引力透镜理论,根据RICCI标量和非最小耦合的标量字段,在拉格朗日中描述了Lagrangian .we,从而制定了与波动部件的动态相关的广义泊松方程对于两个规格不变标量的重力电位,从改进的背景扩展和波动修复新贡献,展示了镜头观察到如何受到宇宙扩展的影响以及通过各向异性应力的存在,这是线性的非空的在标量张力和引力拉格朗日术语具有对RICCI标量的非最小依赖的理论中,均均均在标量张力和理论中。我们推导出融合功率谱的广义表达式,并说明了扩展Quintessence场景中的新效果,其中耦合到重力的标量场起着黑能量的作用。

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