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Coupling of gravity to matter, spectral action and cosmic topology

机译:引力与物质,光谱作用和宇宙拓扑的耦合

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We consider a model of modified gravity based on the spectral action functional, for a cosmic topology given by a spherical space form, and the associated slow-roll inflation scenario. We consider then the coupling of gravity to matter determined by an almost-commutative geometry over the spherical space form. We show that this produces a multiplicative shift of the amplitude of the power spectra for the density fluctuations and the gravitational waves, by a multiplicative factor equal to the total number of fermions in the matter sector of the model. We obtain the result by an explicit nonperturbative computation, based on the Poisson summation formula and the spectra of twisted Dirac operators on spherical space forms, as well as, for more general spacetime manifolds, using a heat kernel computation.
机译:我们考虑基于频谱作用函数的修正重力模型,该模型针对由球形空间形式给出的宇宙拓扑以及相关的慢滚动膨胀场景。然后,我们考虑重力与物质之间的耦合,该物质由球形空间形式上的几乎可交换的几何形状确定。我们表明,这会导致密度波动和引力波的功率谱幅值乘以一个乘数,该乘数等于该模型物质扇区中费米子的总数。我们基于泊松求和公式和球形空间形式上扭曲的狄拉克算子的谱,以及对于更一般的时空流形,使用热核计算,通过显式非扰动计算获得结果。

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