Critical spectral statistics in two-dimensional interacting disordered systems
arXiv:cond-mat/9808139 · doi:10.1103/PhysRevLett.83.140
Abstract
The effect of Coulomb and short-range interactions on the spectral properties of two-dimensional disordered systems with two spinless fermions is investigated by numerical scaling techniques. The size independent universality of the critical nearest level-spacing distribution allows one to find a delocalization transition at a critical disorder for any non-zero value of the interaction strength. At the critical point the spacings distribution has a small- behavior , and a Poisson-like decay at large spacings.
4 two-column pages, 3 eps figures, RevTeX, new results added
References in corpus (9)
- Metal-insulator transition at B=0 in a dilute two dimensional GaAs-AlGaAs hole gas
- The Metallic-Like Conductivity of a Two-Dimensional Hole System
- Emergence of quantum chaos in finite interacting Fermi systems
- Metallic Phase and Metal-insulator Transition in 2d Electronic Systems
- Asymptotics of Universal Probability of Neighboring Level Spacings at the Anderson Transition
- Localization in Fock space: A finite size scaling hypothesis for many particle excitation statistics
- Localized to extended states transition for two interacting particles in a two-dimensional random potential
- Thouless numbers for few-particle systems with disorder and interactions
- Scaling of level-statistics and critical exponent of disordered two-dimensional symplectic systems
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- Critical level spacing distribution in long-range hopping Hamiltonians
- Thermalization of Atom-Molecule Bose Gases in a Double-Well Potential
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- Absence of two-body delocalization transitions in the two-dimensional Anderson-Hubbard model
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