Spatial Structures of Anomalously Localized States in Tail Regions at the Anderson Transition
arXiv:cond-mat/0411628 · doi:10.1143/JPSJS.74S.242
Abstract
We study spatial structures of anomalously localized states (ALS) in tail regions at the critical point of the Anderson transition in the two-dimensional symplectic class. In order to examine tail structures of ALS, we apply the multifractal analysis only for the tail region of ALS and compare with the whole structure. It is found that the amplitude distribution in the tail region of ALS is multifractal and values of exponents characterizing multifractality are the same with those for typical multifractal wavefunctions in this universality class.
4 pages, 4 figures
References in corpus (12)
- Random Resonators and Prelocalized Modes in Disordered Dielectric Films
- The Anderson Transition in Two-Dimensional Systems with Spin-Orbit Coupling
- Fingerprints of classical diffusion in open 2D mesoscopic systems in the metallic regime
- Quest for Rare Events in three-dimensional Mesoscopic Disordered Metals
- Crossover Between Universality Classes in the Statistics of Rare Events in Disordered Conductors
- Signatures of Classical Diffusion in Quantum Fluctuations of 2D Chaotic Systems
- Anomalously Localized States in the Anderson Model
- Anomalously localized states and multifractal correlations of critical wavefunctions in two-dimensional electron systems with spin-orbital interactions
- On the spatial structure of anomalously localised states in disordered conductors
- Critical level statistics and anomalously localized states at the Anderson transition
- Structure of quantum disordered wave functions: weak localization, far tails, and mesoscopic transport
- Correlation Exponent and Anomalously Localized States at the Critical Point of the Anderson Transition