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一种引力的规范理论方法。

A gauge-theoretic approach to gravity.

作者信息

Krasnov Kirill

机构信息

School of Mathematical Sciences , University of Nottingham, University Park , Nottingham NG7 2RD , UK.

出版信息

Proc Math Phys Eng Sci. 2012 Aug 8;468(2144):2129-2173. doi: 10.1098/rspa.2011.0638. Epub 2012 Mar 21.

Abstract

Einstein's general relativity (GR) is a dynamical theory of the space-time metric. We describe an approach in which GR becomes an SU(2) gauge theory. We start at the linearized level and show how a gauge-theoretic Lagrangian for non-interacting massless spin two particles (gravitons) takes a much more simple and compact form than in the standard metric description. Moreover, in contrast to the GR situation, the gauge theory Lagrangian is convex. We then proceed with a formulation of the full nonlinear theory. The equivalence to the metric-based GR holds only at the level of solutions of the field equations, that is, on-shell. The gauge-theoretic approach also makes it clear that GR is not the only interacting theory of massless spin two particles, in spite of the GR uniqueness theorems available in the metric description. Thus, there is an infinite-parameter class of gravity theories all describing just two propagating polarizations of the graviton. We describe how matter can be coupled to gravity in this formulation and, in particular, how both the gravity and Yang-Mills arise as sectors of a general diffeomorphism-invariant gauge theory. We finish by outlining a possible scenario of the ultraviolet completion of quantum gravity within this approach.

摘要

爱因斯坦广义相对论(GR)是一种时空度规的动力学理论。我们描述了一种方法,在这种方法中GR变成了一种SU(2)规范理论。我们从线性化层面开始,展示了对于非相互作用的无质量自旋为2的粒子(引力子),规范理论拉格朗日量如何比标准度规描述具有更简单、更紧凑的形式。此外,与GR情形不同,规范理论拉格朗日量是凸的。然后我们继续阐述完整的非线性理论。与基于度规的GR的等价性仅在场方程的解的层面成立,即在壳上成立。规范理论方法也清楚地表明,尽管在度规描述中有GR唯一性定理,但GR并不是无质量自旋为2的粒子的唯一相互作用理论。因此,存在一个无穷参数类的引力理论,它们都只描述引力子的两种传播极化。我们描述了在这种表述中物质如何与引力耦合,特别是引力和杨 - 米尔斯理论如何作为一般微分同胚不变规范理论的不同部分出现。我们通过概述在这种方法内量子引力紫外完备的一种可能情形来结束。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7b08/3390791/db8a54656cf5/rspa20110638-g1.jpg

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