Metamaterial-enhanced coupling between magnetic dipoles for efficient wireless power transfer

Yaroslav Urzhumov and David R. Smith
Phys. Rev. B 83, 205114 – Published 18 May 2011

Abstract

Nonradiative coupling between conductive coils is a candidate mechanism for wireless energy transfer applications. In this paper we propose a power relay system based on a near-field metamaterial superlens and present a thorough theoretical analysis of this system. We use time-harmonic circuit formalism to describe all interactions between two coils attached to external circuits and a slab of anisotropic medium with homogeneous permittivity and permeability. The fields of the coils are found in the point-dipole approximation using Sommerfeld integrals which are reduced to standard special functions in the long-wavelength limit. We show that, even with a realistic magnetic loss tangent of order 0.1, the power transfer efficiency with the slab can be an order of magnitude greater than free-space efficiency when the load resistance exceeds a certain threshold value. We also find that the volume occupied by the metamaterial between the coils can be greatly compressed by employing magnetic permeability with a large anisotropy ratio.

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  • Received 10 February 2011

DOI:https://doi.org/10.1103/PhysRevB.83.205114

©2011 American Physical Society

Authors & Affiliations

Yaroslav Urzhumov and David R. Smith

  • Center for Metamaterials and Integrated Plasmonics, Pratt School of Engineering, Duke University, Durham, North Carolina 27708, USA

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Issue

Vol. 83, Iss. 20 — 15 May 2011

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