Within a general framework, we discuss the wave function statistics in the Lloyd model of Anderson localization on a one-dimensional lattice with a Cauchy distribution for random on-site potential. We demonstrate that already in leading order in the disorder strength, there exists a hierarchy of anomalies in the probability distributions of the wave function, the conductance, and the local density of states, for every energy which corresponds to a rational ratio of wavelength to lattice constant. Power-law rather than log-normal tails dominate the short-distance wave-function statistics
© 2018 American Physical Society. Anderson localization of classical waves in weakly scattering one-...
We study statistical properties of the eigenfunctions in the three-dimensional Anderson model of loc...
The distribution function of local amplitudes, t = \psi(r(0))\(2), of single-particle states in diso...
We investigate the short-distance statistics of the local density of states ν in long one-dimensiona...
We investigate the short-distance statistics of the local density of states $\nu$ in long one-dimens...
We investigate the short-distance statistics of the local density of states nu in long one-dimension...
We analyze the conductance distribution function in the one-dimensional Anderson model of localizati...
We consider a disordered one-dimensional tight-binding model with power-law decaying hopping amplitu...
We study the random fluctuations of the transmission in disordered quasi-one-dimensional systems suc...
We study the random fluctuations of the transmission in disordered quasi-one-dimensional systems suc...
This is the final version of the article. Available from American Physical Society via the DOI in th...
We calculate the probability distribution of the local density of states ν in a disordered one-dime...
We numerically study the distribution function of the conductance (transmission) in the one-dimensio...
We perform a detailed numerical study of the conductance G through one-dimensional (1D) tight-bindin...
Anderson localization is the ubiquitous phenomenon of inhibition of transport of classical and quant...
© 2018 American Physical Society. Anderson localization of classical waves in weakly scattering one-...
We study statistical properties of the eigenfunctions in the three-dimensional Anderson model of loc...
The distribution function of local amplitudes, t = \psi(r(0))\(2), of single-particle states in diso...
We investigate the short-distance statistics of the local density of states ν in long one-dimensiona...
We investigate the short-distance statistics of the local density of states $\nu$ in long one-dimens...
We investigate the short-distance statistics of the local density of states nu in long one-dimension...
We analyze the conductance distribution function in the one-dimensional Anderson model of localizati...
We consider a disordered one-dimensional tight-binding model with power-law decaying hopping amplitu...
We study the random fluctuations of the transmission in disordered quasi-one-dimensional systems suc...
We study the random fluctuations of the transmission in disordered quasi-one-dimensional systems suc...
This is the final version of the article. Available from American Physical Society via the DOI in th...
We calculate the probability distribution of the local density of states ν in a disordered one-dime...
We numerically study the distribution function of the conductance (transmission) in the one-dimensio...
We perform a detailed numerical study of the conductance G through one-dimensional (1D) tight-bindin...
Anderson localization is the ubiquitous phenomenon of inhibition of transport of classical and quant...
© 2018 American Physical Society. Anderson localization of classical waves in weakly scattering one-...
We study statistical properties of the eigenfunctions in the three-dimensional Anderson model of loc...
The distribution function of local amplitudes, t = \psi(r(0))\(2), of single-particle states in diso...