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首页> 外文期刊>Classical and Quantum Gravity: An Interantional Journal of Gravity Geometry of Field Theories Supergravity Cosmology >Towards conditions for black-hole singularity-resolution in asymptotically safe quantum gravity
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Towards conditions for black-hole singularity-resolution in asymptotically safe quantum gravity

机译:朝向渐近安全量子重力的黑洞奇点分辨率的条件

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摘要

We explore the fate of the curvature singularity of Schwarzschild (deSitter) black holes in asymptotically safe quantum gravity. Specifically, we upgrade the classical spacetime by including the running of the Newton coupling and cosmological constant. In this setting, the antiscreening character of the gravitational interaction can remove the singularity, yet a nonzero value of the cosmological constant in the ultraviolet appears to reintroduce it. We find hints that a finite value of the cosmological constant in the infrared is compatible with singularity resolution provided that the cosmological constant is driven to zero fast enough in the ultraviolet. We compare the corresponding bounds on the critical exponents to the literature.
机译:我们在渐近安全量子重力中探索Schwarzschild(Destitter)黑洞曲率奇异性的命运。 具体而言,我们通过包括牛顿耦合和宇宙常数的运行来升级经典的时期。 在该设置中,引力相互作用的反筛选性能可以去除奇异性,但紫外线中的宇宙学常数的非零值似乎重新引入它。 我们发现暗示红外线中宇宙学常数的有限值与奇异分辨率相容,条件是宇宙学常数在紫外线速度足够快。 我们将关键指数上的相应范围与文献进行比较。

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