SCATTERING THEORY FOR LATTICE OPERATORS IN DIMENSION d ≥ 3

Author:

BELLISSARD JEAN1,SCHULZ-BALDES HERMANN2

Affiliation:

1. Georgia Institute of Technology, School of Mathematics, Atlanta GA 30332-0160, USA

2. Department Mathematik, Universität Erlangen-Nürnberg, D-91054 Erlangen, Germany

Abstract

This paper analyzes the scattering theory for periodic tight-binding Hamiltonians perturbed by a finite range impurity. The classical energy gradient flow is used to construct a conjugate (or dilation) operator to the unperturbed Hamiltonian. For dimension d ≥ 3, the wave operator is given by an explicit formula in terms of this dilation operator, the free resolvent and the perturbation. From this formula, the scattering and time delay operators can be read off. Using the index theorem approach, a Levinson theorem is proved which also holds in the presence of embedded eigenvalues and threshold singularities.

Publisher

World Scientific Pub Co Pte Lt

Subject

Mathematical Physics,Statistical and Nonlinear Physics

Reference31 articles.

1. C0-Groups, Commutator Methods and Spectral Theory of N-Body Hamiltonians

2. D. Bollé, Ideas and Methods in Quantum and Statistical Physics, eds. S. Albeverio (Cambridge Univ. Press, Cambridge, 1992) pp. 173–196.

3. Operator Algebras and Quantum Statistical Mechanics

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