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首页> 外文期刊>Physical review letters >Probing Gravity at Cosmological Scales by Measurements which Test the Relationship between Gravitational Lensing and Matter Overdensity
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Probing Gravity at Cosmological Scales by Measurements which Test the Relationship between Gravitational Lensing and Matter Overdensity

机译:通过测量引力透镜与物质密度之间关系的测量来探测宇宙尺度的重力

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The standard cosmology is based on general relativity (GR) and includes dark matter and dark energy and predicts a fixed relationship between the gravitational potentials responsible for gravitational lensing and the matter overdensity. Alternative theories of gravity often make different predictions. We propose a set of measurements which can test this relationship, thereby distinguishing between dark energy or matter models and models in which gravity differs from GR. Planned surveys will be able to measure E_G, an observational quantity whose expectation value is equal to the ratio of the Laplacian of the Newtonian potentials to the peculiar velocity divergence, to percent accuracy. This will easily separate alternatives such as the cold dark matter model with a cosmological constant, Dvali-Gabadadze-Porrati, TeVeS, and f (R) gravity.
机译:标准宇宙学基于广义相对论(GR),包括暗物质和暗能量,并预测引起引力透镜作用的引力与物质密度之间的固定关系。引力的替代理论常常做出不同的预测。我们提出了一组可以测试这种关系的测量,从而区分了暗能量或物质模型以及重力不同于GR的模型。计划的调查将能够测量E_G,这是一个观测值,其期望值等于牛顿势的拉普拉斯算子与特殊速度散度之比与百分比精度。这将轻松地分离出替代方案,例如具有宇宙学常数的冷暗物质模型,Dvali-Gabadadze-Porrati,TeVeS和f(R)重力。

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