Beyond Anderson Localization in 1D: Anomalous Localization of Microwaves in Random Waveguides
Abstract
Experimental evidence demonstrating that anomalous localization of waves can be induced in a controllable manner is reported. A microwave waveguide with dielectric slabs randomly placed is used to confirm the presence of anomalous localization. If the random spacing between slabs follows a distribution with a power-law tail (L\'evy-type distribution), unconventional properties in the microwave-transmission fluctuations take place revealing the presence of anomalous localization. We study both theoretically and experimentally the complete distribution of the transmission through random waveguides characterized by ("L\'evy waveguides") and , being the exponent of the power-law tail of the L\'evy-type distribution. As we show, the transmission distributions are determined by only two parameters, both of them experimentally accessible. Effects of anomalous localization on the transmission are compared with those from the standard Anderson localization.
Keywords
Cite
@article{arxiv.1411.1271,
title = {Beyond Anderson Localization in 1D: Anomalous Localization of Microwaves in Random Waveguides},
author = {A. A. Fernández-Marín and J. A. Méndez-Bermúdez and J. Carbonell and F. Cervera and J. Sánchez-Dehesa and V. A. Gopar},
journal= {arXiv preprint arXiv:1411.1271},
year = {2014}
}
Comments
5 pages, 4 figures. Revised version as published"