CRITICAL STATISTICS OF ENERGY LEVEL IN DISORDERED SYSTEMS: II. UNITARY SYMMETRY CLASS
Keywords:
discrete levels, nanoclusters,Abstract
The statistical properties of the discrete levels of electron states in the vicinity of the Anderson transition are investigated in the presence of a magnetic field. For three-dimensional disordered nanoclusters the critical unitary statistics is shown to differ from the critical orthogonal statistics.References
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2. Zharekeshev I.Kh., Kramer B. Scaling of level statistics at the disorder-induced metalinsulator transition // Phys. Rev. B. – 1995. – Vol.51. – P. 17239-17242.
3. Zharekeshev I.Kh. Giant sparse matrix technique for tight-binding models // Abstr. Meeting of the American Physical Society. – Indianapolis, 2002. – P. B33.117
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5. Zharekeshev I. Kh., Batsch M., Schweitzer L., Kramer B. Symmetry and level statistics at the Anderson transition // Proc. Intern. conf. on electron localization and quantum transport in
solids. – Jaszowiec, Polland. – 1996. – P.90-91.
6. Hofstetter E., Schreiber M. Does Broken Time Reversal Symmetry Modify the Critical Behavior at the Metal-Insulator Transition in 3-Dimensional Disordered Systems // Phys. Rev. Lett.
– 1994. – Vol.73. – P. 3137-3140.
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Zharekeshev, I. K. (2017). CRITICAL STATISTICS OF ENERGY LEVEL IN DISORDERED SYSTEMS: II. UNITARY SYMMETRY CLASS. Recent Contributions to Physics (Rec.Contr.Phys.), 36(1), 46–50. Retrieved from https://bph.kaznu.kz/index.php/zhuzhu/article/view/118
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Condensed Matter Physics and Materials Science Problems. NanoScience