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Anderson localization in Euclidean random matrices

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Ciliberti, S. and Grigera, T.S. and Martín Mayor, Víctor and Parisi, G. and Verrocchio, P. (2005) Anderson localization in Euclidean random matrices. Physical review B, 71 (15). ISSN 1098-0121

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Official URL: http://dx.doi.org/10.1103/PhysRevB.71.153104




Abstract

We study the spectra and localization properties of Euclidean random matrices defined on a random graph. We introduce a powerful method to find the density of states and the localization threshold in topologically disordered soff-latticed systems. We solve numerically an equation sexact on the random graphd for the probability distribution function of the diagonal elements of the resolvent matrix, with a population dynamics algorithm sPDAd. We show that the localization threshold can be estimated by studying the stability of a population of real resolvents under the PDA. An application is given in the context of the instantaneous normal modes of a liquid.


Item Type:Article
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© 2005 The American Physical Society. We acknowledge partial support from MCyT, Spain (Grants No. FPA2001-1813, No. FPA2000-0956, and No. BFM2003-08532-C03) and ANPCyT, Argentina. S.C. was supported by the ECHP program (Grant No. HPRN-CT2002-00307). V.M.-M. was supported by the Ramón y Cajal program, and P.V. by the European Commission (Grant No. MCFI-2002-01262). T.S.G. was supported by CONICET (Argentina).

Uncontrolled Keywords:Instantaneous normal-modes; Density-of-states: Analytic computation; Energy landscape; Random lattices; Field-theory; Liquids; Diffusion; Spectrum; Systems.
Subjects:Sciences > Physics > Physics-Mathematical models
ID Code:45748
Deposited On:09 Mar 2018 09:59
Last Modified:09 Mar 2018 09:59

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