ASHTEKAR FORMULATION OF GENERAL-RELATIVITY AND LOOP-SPACE NONPERTURBATIVE QUANTUM-GRAVITY - A REPORT

被引:145
|
作者
ROVELLI, C
机构
[1] IST NAZL FIS NUCL,SEZ PADOVA,PADUA,ITALY
[2] UNIV TRENTO,DIPARTMENTO FIS,I-38050 TRENT,ITALY
关键词
D O I
10.1088/0264-9381/8/9/002
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
The formulation of general relativity discovered by Ashtekar and the recent results obtained in non-perturbative quantum gravity using loop-space techniques are reviewed. The new formulation is based on the choice of a set of Lagrangian (and Hamiltonian) variables, instead of the spacetime metric. In terms of these new variables, the dynamical equations are remarkably simplified and a structural identity between general relativity and the Yang-Mills theories is revealed. The formalism has proven to be useful in numerous problems in gravitational physics. In quantum gravity, the new formalism has overcome long-standing difficulties and led to unexpected results. A non-perturbative approach to quantum theory has been constructed in terms of the Wilson loops of the Ashtekar connection. This approach, denoted as loop-space representation, has led to the complete solution of the quantum diffeomorphism constraint in terms of knot states, to the discovery of an infinite-dimensional class of solutions to the quantum gravitational dynamics, and to certain surprising indications on the existence of a discrete structure of spacetime around the Planck length. These results are presented here in a compact self-contained form. The basic Ashtekar formalism is presented and its applications are outlined. The loop-space representation and the non-perturbative knot states of quantum gravity are described in detail, with particular regard to their physical interpretation and to the information they may provide on the microstructure of spacetime.
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页码:1613 / 1675
页数:63
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