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Complex Langevin analysis of the space-time structure in the Lorentzian type IIB matrix model

机译:Lorentzian型IIB矩阵模型的时空结构复杂Langevin分析

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A bstract The Lorentzian type IIB matrix model has been studied as a promising candidate for a nonperturbative formulation of superstring theory. In particular, the emergence of (3+1)D expanding space-time was observed by Monte Carlo studies of this model. It has been found recently, however, that the matrix configurations generated by the simulation is singular in that the submatrices representing the expanding 3D space have only two large eigenvalues associated with the Pauli matrices. This problem has been attributed to the approximation used to avoid the sign problem in simulating the model. Here we investigate the model using the complex Langevin method to overcome the sign problem instead of using the approximation. Our results indicate a clear departure from the Pauli-matrix structure, while the (3+1)D expanding behavior is kept intact.
机译:Bstract洛伦兹型IIB矩阵模型已被研究作为超吸引理论的非触发配方的有希望的候选者。 特别是,通过该模型的Monte Carlo研究观察到(3 + 1)D扩展空间时间的出现。 然而,它最近已经发现,由模拟产生的矩阵配置是奇异的,因为表示扩展3D空间的子序列仅具有与Pauli矩阵相关的两个大特征值。 此问题归因于用于避免模拟模型的符号问题的近似。 在这里,我们使用复杂的Langevin方法调查模型来克服标志问题而不是使用近似。 我们的结果表明,从Pauli-Matrix结构的清晰偏离,而(3 + 1)D扩展行为保持完整。

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