Perturbative quantum gravity and its relation to gauge theory

被引:152
作者
Bern Z. [1 ]
机构
[1] Department of Physics and Astronomy, Univ. of California at Los Angeles, Los Angeles
关键词
Gauge Theory; Open String; Feynman Rule; Tree Amplitude; Loop Momentum;
D O I
10.12942/lrr-2002-5
中图分类号
学科分类号
摘要
In this review we describe a non-trivial relationship between perturbative gauge theory and gravity scattering amplitudes. At the semi-classical or tree-level, the scattering amplitudes of gravity theories in flat space can be expressed as a sum of products of well defined pieces of gauge theory amplitudes. These relationships were first discovered by Kawai, Lewellen, and Tye in the context of string theory, but hold more generally. In particular, they hold for standard Einstein gravity. A method based on D-dimensional unitarity can then be used to systematically construct all quantum loop corrections order-by-order in perturbation theory using as input the gravity tree amplitudes expressed in terms of gauge theory ones. More generally, the unitarity method provides a means for perturbatively quantizing massless gravity theories without the usual formal apparatus associated with the quantization of constrained systems. As one application, this method was used to demonstrate that maximally supersymmetric gravity is less divergent in the ultraviolet than previously thought.
引用
收藏
相关论文
共 198 条
[1]  
Abbott, L.F., The background field method beyond one loop (1981) Nucl. Phys. B, 185, pp. 189-203
[2]  
Aharony, O., Gubser, S.S., Maldacena, J., Ooguri, H., Oz, Y., Large N Field Theories, String Theory and Gravity (2000) Phys. Rep., 323, pp. 183-386
[3]  
Aharony, O., (1999) Large N Field Theories, String Theory and Gravity, , http://xxx.lanl.gov/abs/hep-th/9905111, (May), [Online Los Alamos Preprint]
[4]  
Antoniadis, I., Bachas, C.P., Kounnas, C., Four-dimensional super-strings (1987) Nucl. Phys. B, 289, pp. 87-108
[5]  
Bardeen, W.A., Self-Dual Yang-Mills Theory, Integrability and Multiparton Amplitudes (1996) Prog. Theor. Phys. Suppl., 123, pp. 1-8
[6]  
Batalin, I.A., Vilkovisky, G.A., Relativistic S-matrix of dynamical systems with boson and fermion constraints (1977) Phys. Lett. B, 69, pp. 309-312
[7]  
Bel, L., Sur la radiation gravitationelle (1958) Comptes Rendus Acad. Sci., 247, pp. 1094-1096
[8]  
(1959) Comptes Rendus Acad. Sci., 248, p. 1297
[9]  
Berends, F.A., Gastmans, R., On the high-energy behavior in quantum gravity (1975) Nucl. Phys. B, 88, pp. 99-108
[10]  
Berends, F.A., Giele, W., The six gluon process as an example of Weyl-Van der Waerden spinor calculus (1987) Nucl. Phys. B, 294, pp. 700-732