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Singularity avoidance in classical gravity from four-fermion interaction

机译:四费米子相互作用避免经典引力中的奇点

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We derive the dynamics of the gravitational collapse of a homogeneous and spherically symmetric cloud in a classical set-up endowed with a topological sector of gravity and a non-minimal coupling to fermions. The effective theory consists of the Einstein–Hilbert action plus Dirac fermions interacting through a four-fermion vertex. At the classical level, we obtain the same picture that has been recently studied by some of us within a wide range of effective theories inspired by a super-renormalizable and asymptotically free theory of gravity. The classical singularity is replaced by a bounce, beyond which the cloud re-expands indefinitely. We thus show that, even at a classical level, if we allow for a non-minimal coupling of gravity to fermions, event horizons may never form for a suitable choice of some parameters of the theory.
机译:我们得出了在经典设置中均质和球形对称云的重力塌陷的动力学,这种经典设置具有重力的拓扑结构以及与费米子的非最小耦合。有效的理论包括爱因斯坦-希尔伯特作用以及狄拉克费米子通过四费米子顶点相互作用。在古典水平上,我们获得了由某些人最近研究的同一张图片,这是受超可重整化和渐近自由的引力理论启发的各种有效理论中的。弹跳取代了经典的奇异点,超过该弹跳后,云将无限扩展。因此,我们表明,即使在传统的水平,如果我们允许重力的非最小耦合费米子,事件视界可能永远不会形成理论的某些参数的适当选择。

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