We follow the temporal evolution of mesoscopic intensity fluctuations and correlation in strongly localized samples. We find an initial burst in relative transmission fluctuations in random one-dimensional (1D) samples due to fluctuations in the arrival time of ballistic transmission. Relative fluctuations subsequently rise, then drop to a minimum at a time t_m, after which they increase rapidly in 1D simulations and quasi- 1D (Q1D) measurements. For t>3t_m, results in 1D and Q1D samples converge towards predictions of a dynamic single parameter scaling model. These results reflect the changing number of modes participating appreciably in transmission as the impact of longer lived modes grows with time delay. © 2010 OSA /FiO/LS 2010
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Wave scattering, diffusion, and localization have long been central research topic in our study of t...
In this paper, we attempt to find a unified framework in which the statistics of wave propagation in...
In this Thesis, the transport behavior of classical wave in 1D random media is studied. Two compleme...
We numerically investigate dynamical property in the one-dimensional tight-binding model with long-r...
International audienceWe study numerically the expansion dynamics of an initially confined quantum w...
We analyze the echo dynamics in quasi-one-dimensional random media to investigate how the transition...
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We study the random fluctuations of the transmission in disordered quasi-one-dimensional systems suc...
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As recently discovered [T. Karpiuk et al., Phys. Rev. Lett. 109, 190601 (2012)], Anderson localizati...
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