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CRITICAL BEHAVIOR AT THE METAL-INSULATOR TRANSITION IN THREE-DIMENSIONAL DISORDERED SYSTEMS IN A STRONG MAGNETIC FIELD

机译:强磁场中三维无序系统中金属-绝缘体转变的临界行为

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The critical behavior of three-dimensional disordered systems in a strong magnetic field is investigated by analyzing the spectral fluctuations of the energy spectrum. The level spacing distribution P(s), as well the Dyson-Mehta statistics Delta(3)(L), are considered. Except for the small s behavior of P(s), which depends on the presence or absence of a magnetic field but not on its strength, the other quantities, large s behavior of P(s) and Delta(3)(L) turn out to be independent of its presence or absence and therefore of the time reversal symmetry. This suggests that the metal-insulator transition, which is defined by the symmetry of the system at the critical point, is independent of the presence or absence of the time reversal symmetry. [References: 23]
机译:通过分析能谱的光谱波动,研究了三维无序系统在强磁场中的临界行为。考虑水平间距分布P(s),以及戴森-梅塔统计量Delta(3)(L)。除了P(s)的小s行为(取决于磁场的存在与否,而不取决于磁场的强度)以外,P(s)的其他大s行为和Delta(3)(L)会转不受其存在或不存在的影响,因此不受时间反转对称性的影响。这表明由系统在临界点的对称性定义的金属-绝缘体转变与时间反向对称性的存在与否无关。 [参考:23]

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