论文标题
量子重力的隐藏非本地性和自我肾上腺素化
Hidden Non-Locality and Self-Superrenormalization of Quantum Gravity
论文作者
论文摘要
我们表明,黑洞(BH)的形成/蒸发在扰动理论的所有顺序上使量子重力单位化。非扰动量子效应节省了任何多项式差异的散射幅度。这种现象与有效的非本地性和新森堡不确定性原理的新兴修改密切相关。 BH的产量将量子重力顶点和繁殖物取代,这是由于其全息储存的熵而导致的。从这个意义上讲,量子重力是一种可超大型理论,尽管非本地性在其作用中隐藏了。
We show that the formation/evaporation of Black Holes (BH) unitarizes quantum gravity at all the orders of the perturbation theory. Non-perturbative quantum effects save the scattering amplitudes from any polynomial divergences. Such a phenomena is intimately related to the dynamical emergence of an effective non-locality as well as emergent modifications of the Heisenberg's uncertainty principle. The BH production de-localizes quantum gravity vertices and propagators as a consequence of its holographically stored entropy. In this sense, quantum gravity is a superrenormalizable theory, although non-locality is hidden in its action.