THE CROSSOVER BETWEEN ORTHOGONAL AND UNITARY SYMMETRY IN SMALL DISORDERED-SYSTEMS - A SUPERSYMMETRY APPROACH

被引:63
|
作者
ALTLAND, A
IIDA, S
EFETOV, KB
机构
[1] EHIME UNIV,FAC SCI,DEPT PHYS,MATSUYAMA,EHIME 790,JAPAN
[2] MAX PLANCK INST FESTKORPERFORSCH,W-7000 STUTTGART 80,GERMANY
来源
关键词
D O I
10.1088/0305-4470/26/14/020
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
We consider the spectral statistics of independent electrons moving at zero temperature in a weakly disordered metallic ring threaded by a magnetic flux. The analysis is based on the supersymmetry method involving both commuting and anticommuting variables. Besides, we consider an ensemble of Gaussian distributed symmetric random matrices (Gaussian orthogonal ensemble) which are perturbed by a small time reversal symmetry breaking contribution. For energies smaller than the inverse diffusion time around the ring E(c), the spectral correlation functions of both models can be represented in terms of supermatrix integrals of identical structure. In conformity with recent numerical results, this implies that the spectral properties of the two models coincide. These matrix integrals are to a large extent universal, i.e. they depend only on two physical parameters: the mean level spacing and a symmetry breaking parameter which is identified as the typical sensitivity of levels to the time reversal symmetry breaking perturbation. We parametrize the relevant matrix coset space of the nonlinear sigma-model in a novel way which is particularly convenient for treating models in the crossover between the two symmetry classes. As an example, we present a detailed calculation of the level-level correlation function. The basic formalism, however, applies quite generally and can be used for the investigation of different types of correlation functions and system geometries as well.
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页码:3545 / 3568
页数:24
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