Wang Charles H-T
School of engineering and Physical Sciences, University of Aberdeen, King's College, Aberdeen, UK.
Philos Trans A Math Phys Eng Sci. 2006 Dec 15;364(1849):3375-88. doi: 10.1098/rsta.2006.1904.
The emergence of loop quantum gravity over the past two decades has stimulated a great resurgence of interest in unifying general relativity and quantum mechanics. Among a number of appealing features of this approach is the intuitive picture of quantum geometry using spin networks and powerful mathematical tools from gauge field theory. However, the present form of loop quantum gravity suffers from a quantum ambiguity, owing to the presence of a free (Barbero-Immirzi) parameter. Following the recent progress on conformal decomposition of gravitational fields, we present a new phase space for general relativity. In addition to spin-gauge symmetry, the new phase space also incorporates conformal symmetry making the description parameter free. The Barbero-Immirzi ambiguity is shown to occur only if the conformal symmetry is gauge fixed prior to quantization. By withholding its full symmetries, the new phase space offers a promising platform for the future development of loop quantum gravity. This paper aims to provide an exposition, at a reduced technical level, of the above theoretical advances and their background developments. Further details are referred to cited references.
在过去二十年里,圈量子引力的出现激发了人们对统一广义相对论和量子力学的极大兴趣的再度兴起。这种方法的诸多吸引人的特征之一是使用自旋网络的量子几何直观图景以及来自规范场论的强大数学工具。然而,由于存在一个自由的(巴贝罗 - 伊米里齐)参数,圈量子引力的当前形式存在量子模糊性。随着引力场共形分解方面的最新进展,我们提出了广义相对论的一个新相空间。除了自旋规范对称性外,新相空间还纳入了共形对称性,使得描述没有参数。结果表明,只有在量子化之前对共形对称性进行规范固定时,才会出现巴贝罗 - 伊米里齐模糊性。通过保留其全部对称性,新相空间为圈量子引力的未来发展提供了一个有前景的平台。本文旨在以较低的技术水平阐述上述理论进展及其背景发展情况。更多细节请参考引用文献。