Improved Perturbation Theory and Four-Dimensional Space-Time in the IIB Matrix Model

Improved Perturbation Theory and Four-Dimensional Space-Time in the IIB Matrix Model
复制标题

IIB矩阵模型中改进的微扰理论和四维时空

DOI:
10.1143/ptp.109.115
复制
发表时间:
2002
影响因子:
--
通讯作者:
S. Shinohara
S. Shinohara
中科院分区:
--
文献类型:
--
作者:
Hikaru Kawai;S. Kawamoto;T. Kuroki;S. Shinohara

文献摘要

被引文献

相似文献

我们在改进的平均场近似(IMFA)的基础上分析了IIB矩阵模型,得到了四维时空表现为最稳定真空的证据。该方法是一种获得改进扰动序列的系统方法,由Nishimura和Sugino首先应用于IIB矩阵模型。在之前的一篇文章中,我们重新表述了这种方法,并提出了改进级数收敛的判据,即“平台”的出现。在本文中,我们进行了高阶计算,发现我们改进的自由能趋于平稳,这表明IMFA在IIB矩阵模型中工作得很好。
We have analyzed the IIB matrix model on the basis of the improved mean field approximation (IMFA) and have obtained evidence suggesting that the four-dimensional space-time appears as its most stable vacuum. This method is a systematic way to obtain an improved perturbation series and was first applied to the IIB matrix model by Nishimura and Sugino. In a previous paper, we reformulated this method and proposed a criterion for the convergence of the improved series, that is, the appearance of a “plateau”. In this paper, we carry out higher-order calculations, and find that our improved free energy tends to have a plateau, which shows that IMFA works well in the IIB matrix model.