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首页> 外文期刊>The journal of high energy physics >Complex Langevin analysis of the spontaneous symmetry breaking in dimensionally reduced super Yang-Mills models
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Complex Langevin analysis of the spontaneous symmetry breaking in dimensionally reduced super Yang-Mills models

机译:复杂Langevin分析尺寸减少超级阳磨机的自发对称分析

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A bstract In recent years the complex Langevin method (CLM) has proven a powerful method in studying statistical systems which suffer from the sign problem. Here we show that it can also be applied to an important problem concerning why we live in four-dimensional spacetime. Our target system is the type IIB matrix model, which is conjectured to be a nonperturbative definition of type IIB superstring theory in ten dimensions. The fermion determinant of the model becomes complex upon Euclideanization, which causes a severe sign problem in its Monte Carlo studies. It is speculated that the phase of the fermion determinant actually induces the spontaneous breaking of the SO(10) rotational symmetry, which has direct consequences on the aforementioned question. In this paper, we apply the CLM to the 6D version of the type IIB matrix model and show clear evidence that the SO(6) symmetry is broken down to SO(3). Our results are consistent with those obtained previously by the Gaussian expansion method.
机译:近年来复杂Langevin方法(CLM)在研究患有标志问题的统计系统方面证明了一种强大的方法。在这里,我们表明它也可以应用于我们生活在四维时期的重要问题。我们的目标系统是IIB类型矩阵模型,其猜想是III型超标理论的非触发定义在十维中。在欧洲化的情况下,该模型的FERMION决定因素变得复杂,这在其蒙特卡罗研究中引起了严重的标志问题。据推测,FEREMION决定蛋白的相位实际上诱导SO(10)旋转对称的自发性断裂,这对上述问题具有直接的后果。在本文中,我们将CLM应用于IIB型矩阵模型的6D版本,并显示明确的证据,即所以(6)对称性被分解为(3)。我们的结果与先前通过高斯扩展方法获得的结果一致。

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