论文标题
费米子物质与埃克斯克黑洞与扭转的相互作用
Interaction of Fermionic Matter and ECSK Black Hole with Torsion
论文作者
论文摘要
爱因斯坦 - 卡丹 - 斯卡米 - 凯布尔(ECSK)重力理论中费米子物质的自旋与扭转之间的相互作用在非常密集的费米子物质状态下提供了令人反感的重力潜力,从而阻止了深层内黑洞奇异性的形成。虽然一开始,黑洞中的黑洞中的费米子被黑洞吸引了,但在临界点被排斥以在临界的高密度下反弹,然后作为新创建的空间扩展到地平线的另一侧,这可能被视为一个非发明的,封闭的宇宙。在ECSK重力理论的框架中,我们在一个黑洞中构建了这些费米子的作用,从中推断出自由狄拉克作用以获得相互作用的潜力。具有极具反击潜力的弹跳宇宙的创建可能与运行真空有关,而修改后的Friedmann方程产生了与当前FRW宇宙的一致宇宙学参数。最后,这种情况自然地解决了宇宙学的平坦度和地平线问题,而无需引入精细调整的标量场,或者在重力作用中RICCI标量R的更复杂的功能。
The interactions between the spin of fermionic matter and torsion in the Einstein-Cartan-Sciama-Kibble (ECSK) theory of gravity provides a repulsive gravitational potential at the very dense states of fermionic matter, which prevents the formation of black hole singularities inside the deeper horizon. While the fermionic matter in the black hole is attracted by the black hole at the beginning, after a critical point it is repelled to bounce at a critical high density and then expand into other side of the horizon as a newly created space, which may be considered as a nonsingular, closed universe. We constructed the action of these fermions in a black hole with torsion in the framework of ECSK theory of gravity from which the free Dirac action is inferred to obtain the interaction potential. The creation of a bouncing universe with the extremely repulsive potential may be related to the running vacuum and the modified Friedmann equations yield the consistent cosmological parameters with present FRW universe. Finally, this scenario naturally solves the flatness and horizon problems of cosmology without introducing finely tuned scalar fields, or more complicated functions of the Ricci Scalar R in the gravitational action.