Tunable negative permeability in a three-dimensional superconducting metamaterial
Abstract
We report on highly tunable radio frequency (rf) characteristics of a low-loss and compact three dimensional (3D) metamaterial made of superconducting thin film spiral resonators. The rf transmission spectrum of a single element of the metamaterial shows a fundamental resonance peak at 24.95 MHz that shifts to a 25 smaller frequency and becomes degenerate when a 3D array of such elements is created. The metamaterial shows an tunable narrow frequency band in which the real part of the effective permeability is negative over a wide range of temperature, which reverts to gradually near-zero and positive values as the superconducting critical temperature is approached. This metamaterial can be used for increasing power transfer efficiency and tunability of electrically small rf-antennas.
Cite
@article{arxiv.1501.03721,
title = {Tunable negative permeability in a three-dimensional superconducting metamaterial},
author = {C. Kurter and T. Lan and L. Sarytchev and Steven M. Anlage},
journal= {arXiv preprint arXiv:1501.03721},
year = {2015}
}
Comments
6 pages, 4 figures