Conductivity in quasicrystals via hierarchically variable-range hopping
- 1 January 1996
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review B
- Vol. 53 (1), 181-191
- https://doi.org/10.1103/physrevb.53.181
Abstract
This paper takes the structure example of the AlPdMn quasicrystal, as determined from diffraction data, to derive useful self-similarity rules in consistency with composition and atomic valence constraints. These rules are then accounted for to explain inelastic-neutron-scattering data and thermal conductivity behavior. Basically, three regimes can be identified: extended low-energy phonon conductivity at low temperature following roughly a power law which transforms into a plateau of constant conductivity and, at higher temperature, a phonon assisted localized-state hopping mechanism with a power law and hierarchically distributed hopping distances. Electrical conductivity is also briefly analyzed along the same approach: accordingly, pure perfect quasicrystals should show a σ(T)∝T behavior with deviation in at low temperature and in at high temperature coming from quasiperiodicity breaking. © 1996 The American Physical Society.
Keywords
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