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      Level-Spacing Distributions of Planar Quasiperiodic Tight-Binding Models

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          Abstract

          We study the statistical properties of energy spectra of two-dimensional quasiperiodic tight-binding models. We demonstrate that the nearest-neighbor level spacing distributions of these non-random systems are well described by random matrix theory. Properly taking into account the symmetries of models defined on various finite approximants of quasiperiodic tilings, we find that the underlying universal level-spacing distribution is given by the Wigner-Dyson distribution of the Gaussian orthogonal random matrix ensemble. Our data allow us to see the differences between the Wigner surmise and the exact level-spacing distribution. In particular, our result differs from the critical level-spacing distribution computed at the metal-insulator transition in the three-dimensional Anderson model of disorder.

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          Statistics of spectra of disordered systems near the metal-insulator transition

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            Quasicrystal with one-dimensional translational symmetry and a tenfold rotation axis.

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              New ordered state between crystalline and amorphous in Ni-Cr particles

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                Author and article information

                Journal
                01 October 1997
                Article
                10.1103/PhysRevLett.80.3996
                cond-mat/9710006
                0552b2be-77b4-40e9-aedf-7a02c42de18e
                History
                Custom metadata
                Sfb393/97-21
                Phys. Rev. Lett. 80, 3996 (1998)
                5 RevTeX pages including 3 EPS figures
                cond-mat.dis-nn cond-mat.mes-hall

                Theoretical physics,Nanophysics
                Theoretical physics, Nanophysics

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