Universality classes and fluctuations in disordered systems
- 8 April 1992
- journal article
- Published by The Royal Society in Proceedings of the Royal Society of London. Series A: Mathematical and Physical Sciences
- Vol. 437 (1899), 67-83
- https://doi.org/10.1098/rspa.1992.0047
Abstract
Waves transmitted through disordered media show increasing fluctuations with thickness of material so that averages of different properties of the wavefield have very different scaling with thickness traversed. We have been able to classify these properties according to a scheme that is independent of the nature of the medium, such that members of a class have a universal scaling independent of the nature of the medium. We apply this result to trace (TL T†L)M, where TL is the amplitude transmission matrix. The eigenfunctions of TL T†L define a set of channels through which the current flows, and the eigenvalues are the corresponding transmission coefficients. We prove that these coefficients are either ≈ 0 or ≈ 1. As L increases more channels are shut down. This is the maximal fluctuation theorem: fluctuations cannot be greater than this. We expect that our classification scheme will prove of further value in proving theorems about limiting distributions. We show by numerical simulations that our theorem holds good for a wide variety of systems, in one, two and three dimensions.Keywords
This publication has 9 references indexed in Scilit:
- Multiple scattering of waves in random media: a transfer matrix approachProceedings of the Royal Society of London. Series A: Mathematical and Physical Sciences, 1991
- Maximal fluctuations — A new phenomenon in disordered systemsPhysica A: Statistical Mechanics and its Applications, 1990
- Transfer matrices and conductivity in two- and three-dimensional systems. I. FormalismJournal of Physics: Condensed Matter, 1990
- Reflection of waves from disordered surfacesJournal of Physics: Condensed Matter, 1989
- Crossover to strong intensity correlation for microwave radiation in random mediaPhysical Review Letters, 1989
- Active Transmission Channels and Universal Conductance FluctuationsEurophysics Letters, 1986
- Universal Conductance Fluctuations in MetalsPhysical Review Letters, 1985
- The statistics of one-dimensional resistancesJournal of Physics C: Solid State Physics, 1984
- One-Parameter Scaling of Localization Length and Conductance in Disordered SystemsPhysical Review Letters, 1981