Developments in 2D String Theory

Developments in 2D String Theory
复制标题

二维弦理论的发展

DOI:
10.1142/9789814447072_0004
复制
发表时间:
1993
期刊:
arXiv: High Energy Physics - Theory
影响因子:
--
通讯作者:
A. Jevicki
A. Jevicki
中科院分区:
--
文献类型:
--
作者:
A. Jevicki

文献摘要

被引文献

相似文献

近年来,二维弦理论和量子引力取得了显着进展。从矩阵模型开始,人们发现了一种新的、计算能力强大的理论描述,没有数学复杂性。这些模型与弦理论的相关性来自于 1/N 展开,其中 1/N 扮演裸弦耦合常数 g0 st = 1/N 的角色。这根据拓扑结构对费曼图进行分类;对于固定拓扑,对偶图中所有图的总和变为三角曲面的总和。然后通过将晶格间距值发送为零来接近连续统理论。
Recent years have witnessed a remarkable progress in 2d string theory and quantum gravity. Beginning with matrix models one found a new and computationally powerful description of the theory, free of mathematical complexities. The relevance of these models to string theory comes through a 1/N expansion where 1/N plays the role of a bare string coupling constant g0 st = 1/N . This classifies Feynman diagrams according to their topology; for a fixed topology the sum of all graphs in a dual picture becomes a sum of triangulated surfaces. The continuum theory is then approached by sending the value of lattice spacing to zero.