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Observational effects of varying speed of light in quadratic gravity cosmological models

机译:二次重力宇宙学模型中不同光速度的观察效应

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We study different manifestations of the speed of light in theories of gravity where metric and connection are regarded as independent fields. We find that for a generic gravity theory in a frame with locally vanishing affine connection, the usual degeneracy between different manifestations of the speed of light is broken. In particular, the space-time causal structure constant (c(ST)) may become variable in that local frame. For theories of the form f(R, R-mu nu R-mu nu), this variation in c(ST) has an impact on the definition of the luminosity distance (and distance modulus), which can be used to confront the predictions of particular models against Supernovae type Ia (SN Ia) data. We carry out this test for a quadratic gravity model without cosmological constant assuming (i) a constant speed of light and (ii) a varying speed of light (VSL), and find that the latter scenario is favored by the data.
机译:我们研究了指标和连接被视为独立领域的重力理论的光速度的不同表现。 我们发现,对于具有局部消失的仿射连接的框架中的仿制性理论,光线速度的不同表现形式之间的通常退化。 特别地,空时因果结构常数(C(ST))可以在该本地帧中变量。 对于F(R,R-MU NU R-MU NU)的理论,C(ST)的这种变化对亮度距离(和距离模量)的定义产生影响,这可以用于面对预测 特定模型对SuperNovae IA(SN IA)数据。 我们对具有宇宙学常数的二次重力模型进行了该测试,假设(i)恒定的光速和(ii)的光速度(vsl),并发现后一种情况受到数据的青睐。

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