J.H. Kaufman, Owen R. Melroy, et al.
Synthetic Metals
A perturbative scaling theory for calculating static thermodynamic properties of arbitrary local impurity degrees of freedom interacting with the conduction electrons of a metal is presented. The basic features are developments of the ideas of Anderson and Wilson, but the precise formulation is new and is capable of taking into account band-edge effects which cannot be neglected in certain problems. Recursion relations are derived for arbitrary interaction Hamiltonians up to third order in perturbation theory. A generalized impurity Hamiltonian is defined and its scaling equations are derived up to third order. The strategy of using such perturbative scaling equations is delineated and the renormalization-group aspects are discussed. The method is illustrated by applying it to the single-impurity Kondo problem whose static properties are well understood. © 1984 The American Physical Society.
J.H. Kaufman, Owen R. Melroy, et al.
Synthetic Metals
Elizabeth A. Sholler, Frederick M. Meyer, et al.
SPIE AeroSense 1997
E. Burstein
Ferroelectrics
Min Yang, Jeremy Schaub, et al.
Technical Digest-International Electron Devices Meeting