论文标题
全息自然性和拓扑相变
Holographic Naturalness and Topological Phase Transitions
论文作者
论文摘要
我们表明,我们的宇宙生活在充满大量隐藏量子头发的拓扑和非扰动真空状态。我们将讨论并阐述理论证据,即量子毛与真空中的重力拓扑数有关。因此,Hairons起源于自由度,全息储存在De Sitter地区。宇宙常数(CC)上普朗克量表的层次结构被理解为拓扑记忆本质上存储在时空几何形状中的效果。 CC的任何紫外线量子破坏量都被重新解释为拓扑相变,与大型拓扑头发的脱落有关。该过程被熵抑制,作为从n-到0势的隧道概率。因此,我们宇宙中的微小CC是时空的丰富拓扑结构的体现。在这张肖像中,可以通过量子重力异常产生一个微小的中微子质量,并容纳到大型的n-vacuum状态。我们将从拓扑量子计算的角度重新解释CC稳定。拓扑头发的指数退化性非局部可保护时空记忆免受量子量量子计算机的影响。
We show that our Universe lives in a topological and non-perturbative vacuum state full of a large amount of hidden quantum hairs, the hairons. We will discuss and elaborate on theoretical evidences that the quantum hairs are related to the gravitational topological winding number in vacuo. Thus, hairons are originated from topological degrees of freedom, holographically stored in the de Sitter area. The hierarchy of the Planck scale over the Cosmological Constant (CC) is understood as an effect of a Topological Memory intrinsically stored in the space-time geometry. Any UV quantum destabilizations of the CC are re-interpreted as Topological Phase Transitions, related to the desapparence of a large ensamble of topological hairs. This process is entropically suppressed, as a tunneling probability from the N- to the 0-states. Therefore, the tiny CC in our Universe is a manifestation of the rich topological structure of the space-time. In this portrait, a tiny neutrino mass can be generated by quantum gravity anomalies and accommodated into a large N-vacuum state. We will re-interpret the CC stabilization from the point of view of Topological Quantum Computing. An exponential degeneracy of topological hairs non-locally protects the space-time memory from quantum fluctuations as in Topological Quantum Computers.