Magneto-resistance in three-dimensional composites
Analysis of PDEs
2012-07-03 v1
Abstract
In this paper we study the magneto-resistance, i.e. the second-order term of the resistivity perturbed by a low magnetic field, of a three-dimensional composite material. Extending the two-dimensional periodic framework of [4], it is proved through a H-convergence approach that the dissipation energy induced by the effective magneto-resistance is greater or equal to the average of the dissipation energy induced by the magneto-resistance in each phase of the composite. This inequality validates for a composite material the Kohler law which is known for a homogeneous conductor. The case of equality is shown to be very sensitive to the magnetic fi eld orientation. We illustrate the result with layered and columnar periodic structures.
Keywords
Cite
@article{arxiv.1207.0468,
title = {Magneto-resistance in three-dimensional composites},
author = {Marc Briane and Laurent Pater},
journal= {arXiv preprint arXiv:1207.0468},
year = {2012}
}
Comments
28 pages