Observation of Anderson localization of light in three dimensions
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Using time-resolved transmission measurements, we have found indications of Anderson localization of light in bulk three-dimensional systems. The observed deviation from classical diffusion is in good accord with theoretical predictions of localization and cannot be explained by absorption or experimental artifacts such as stratification, fluorescence, or background illumination. Moreover, we show that in our samples the control parameter is given by the mean free path times the wavenumber as required by the Joffe-Regel criterion. This is in contrast to quasi-dimensional systems that were studied with microwaves. There, the second parameter is related to the number of modes inside a waveguide, and deviations from classical diffusion are possible due to a small number of modes.
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AEGERTER, Christof M., Martin STÖRZER, Susanne FIEBIG, Wolfgang BÜHRER, Georg MARET, 2007. Observation of Anderson localization of light in three dimensions. In: Journal of the Optical Society of America A. 2007, 24(10), pp. A23-A27. ISSN 1084-7529. Available under: doi: 10.1364/JOSAA.24.000A23BibTex
@article{Aegerter2007Obser-16893, year={2007}, doi={10.1364/JOSAA.24.000A23}, title={Observation of Anderson localization of light in three dimensions}, number={10}, volume={24}, issn={1084-7529}, journal={Journal of the Optical Society of America A}, pages={A23--A27}, author={Aegerter, Christof M. and Störzer, Martin and Fiebig, Susanne and Bührer, Wolfgang and Maret, Georg} }
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