Physics – Condensed Matter – Disordered Systems and Neural Networks
Scientific paper
1998-05-20
Phys. Rev. Lett. 80, 4165 (1998)
Physics
Condensed Matter
Disordered Systems and Neural Networks
Scientific paper
10.1103/PhysRevLett.80.4165
Exact calculations of transmission and reflection coefficients in surface randomly corrugated optical waveguides are presented. As the length of the corrugated part of the waveguide increases, there is a strong preference to forward coupling through the lowest mode. An oscillating behavior of the enhanced backscattering as a function of the wavelength is predicted. Although the transport is strongly non isotropic, the analysis of the probability distributions of the transmitted waves confirms in this configuration distributions predicted by Random Matrix Theory for volume disorder.
Garcia-Martin Antonio
Nieto-Vesperinas Manuel
Saenz Juan Jose
Torres Juan Andres
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