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Eddington-inspired-Born-Infeld tensorial instabilities neutralized in a quantum approach

机译:Eddington-Inspired-Born-Infeld的张于风格恒定,以量子方法中和

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摘要

The recent direct detection of gravitational waves has highlighted the huge importance of the tensorial modes in any extended gravitational theory. One of the most appealing approaches to extend gravity beyond general relativity is the Eddington-inspired-Born-Infeld gravity which is formulated within the Palatini approach. This theory can avoid the Big Bang singularity in the physical metric although a Big Bang intrinsic to the affine connection is still there, which in addition couples to the tensorial sector and might jeopardize the viability of the model. In this paper, we suggest that a quantum treatment of the affine connection, or equivalently of its compatible metric, is able to rescue the model. We carry out such an analysis and conclude that from a quantum point of view such a Big Bang is unharmful. We expect therefore that the induced tensorial instability, caused by the Big Bang intrinsic to the affine connection, can be neutralized at the quantum level.
机译:最近的引力波的直接检测突出了张力模式在任何扩展的重力理论中的大量重要性。 伸展重力的最具吸引力之一的方法之一是Eddington-Inspired-Born-infelitGrity,其在Palatini方法中配制。 这种理论可以避免物理指标中的大爆炸奇点,尽管仿射连接的大爆炸仍然存在,但在那里仍然存在,这又可以涉及姿势扇区,并且可能会危及模型的可行性。 在本文中,我们建议使用仿射连接的量子处理,或者等效的其兼容度量,能够拯救模型。 我们执行此类分析并得出结论,从Quantum的角度来看,这么大的爆炸是不安的。 因此,我们预期的是,由仿射连接的大爆炸引起的引起的张力不稳定,可以在量子水平中中和。

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