Anderson localization in optical lattices with speckle disorder
S. SucuDepartment of Physics, Trakya University, 22030 Edirne, TurkeyŞaban AktaşDepartment of Physics, Trakya University, 22030 Edirne, TurkeyS.E. OkanDepartment of Physics, Trakya University, 22030 Edirne, TurkeyZ. AkdenizPiri Reis University, 34940 Tuzla-Istanbul, TurkeyPatrizia VignoloUniversité de Nice-Sophia Antipolis, Institut non Linéaire de Nice, CNRS, 1361 route des Lucioles, F-06560 Valbonne, France
2011en
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We study the localization properties of noninteracting waves propagating in a speckle-like potential superposed on a one-dimensional lattice. Using a combined decimation-renormalization procedure, we estimate the localization length for a tight-binding Hamiltonian where site energies are square-sinc-correlated random variables. By decreasing the width of the correlation function, the disorder patterns approach a $\ensuremath{\delta}$-correlated disorder, and the localization length becomes almost energy independent in the strong disorder limit. We show that this regime can be reached for a size of the speckle grains on the order of (lower than) four lattice steps.
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