论文标题
在超曼叶上的微型cosmos几何成分
Geometrising the Micro-Cosmos on a Supermanifold
论文作者
论文摘要
在半个多世纪的时间里,协变量和差异几何方法在量子场理论(QFT)的发展中发挥了核心作用。在简要介绍了使用这些方法的主要科学成就的历史性概述之后,我们将重点关注Vilkovisky和DeWitt(VDW)最初提出的协方差和差异几何形式主义。我们讨论了在解决VDW有效动作的路径综合度量的独特性方面做出的最新发展,因此解决了超出经典近似之外的宇宙学相关标量理论的量子框架依赖性问题。将特别注意一个长期存在的问题,即VDW形式主义在描述包括费米子在内的通用QFT时所面临的障碍所面临的障碍。我们展示了除了玻色子外,VDW有效的动作如何扩展到超级曼物水以包括费米子。对于微型coss的现实理论(例如标准模型及其引力部门)的完整几何化,所谓的公式似乎非常有前途。
For more than half a century, covariant and differential geometric methods have been playing a central role in the development of Quantum Field Theory (QFT). After a brief historic overview of the major scientific achievements using these methods, we will focus on the covariant and differential geometric formalism originally proposed by Vilkovisky and DeWitt (VDW). We discuss recent developments made in addressing the uniqueness of the path-integral measure of the VDW effective action, and so address the problem of quantum frame dependence in cosmologically relevant scalar-tensor theories beyond the classical approximation. Particular attention will be drawn to a long-standing problem concerning the obstacles that the VDW formalism was facing from its original conception in describing generic QFTs that include fermions. We show how in addition to bosons the VDW effective action can be extended to supermanifolds to include fermions. The so-extended formulation appears to be very promising for a complete geometrisation of realistic theories of micro-cosmos, such as the Standard Model and its gravitational sector.