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RENORMALIZATION AND ENVELOPE FUNCTION FORMALISM FOR INCOMMENSURATE SYSTEMS

Academic Article
Publication Date:
1993
abstract:
We study the localization-delocalization transition in one-dimensional incommensurate crystals both numerically and analytically. From the numerical point of view we provide an implementation of the renormalization method, which allows to process with high accuracy millions of sites, (whenever necessary). From the analytic point of view we extend the envelope function concepts to incommensurate potentials, smoothly varying on lattice constant scale. The control of the transition is made by numerical calculation of the Lyapunov exponent: it presents surprising aspects of universality and simplicity, with plateaux, linear regions and, at times, much more complicated behaviours. The envelope function method, together with semi-analytic considerations, allows to understand, in a number of situations, the presence of mobility edges, pseudo-mobility edges, and gaps in the energy spectrum.
Iris type:
01.01 Articolo in rivista
Keywords:
Localized single-particle electronic states; Metal-insulator transitions; Electron states in low-dimensional structures
List of contributors:
Grosso, Giuseppe; Farchioni, Riccardo
Authors of the University:
FARCHIONI RICCARDO
Handle:
https://iris.cnr.it/handle/20.500.14243/216632
Published in:
NUOVO CIMENTO DELLA SOCIETÀ ITALIANA DI FISICA. D CONDENSED MATTER, ATOMIC, MOLECULAR AND CHEMICAL PHYSICS, BIOPHYSICS (TESTO STAMP.)
Journal
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URL

http://link.springer.com/article/10.1007/BF02456920
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