Frequency tunable electromagnetic metamaterial using ferroelectric loaded split rings
Publication
, Journal Article
Hand, TH; Cummer, SA
Published in: Journal of Applied Physics
April 8, 2008
Measurements of a frequency tunable magnetic metamaterial using metallic split rings loaded with barium strontium titanate thin film capacitors are presented. The resonant frequency of this medium is voltage tunable across a 140 MHz band centered at 1.75 GHz. S -parameter measurements in a microstrip waveguide reveal that the effective relative permeability of the slab has a roughly Lorentzian shape that reaches minimum values between -2 and -3 for biases from 0 to 5 V. The permeability of the slab can tune between positive and negative values, making it useful in applications requiring a state switchable magnetic permeability. © 2008 American Institute of Physics.
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Published In
Journal of Applied Physics
DOI
ISSN
0021-8979
Publication Date
April 8, 2008
Volume
103
Issue
6
Related Subject Headings
- Applied Physics
- 51 Physical sciences
- 49 Mathematical sciences
- 40 Engineering
- 09 Engineering
- 02 Physical Sciences
- 01 Mathematical Sciences
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Hand, T. H., & Cummer, S. A. (2008). Frequency tunable electromagnetic metamaterial using ferroelectric loaded split rings. Journal of Applied Physics, 103(6). https://doi.org/10.1063/1.2898575
Hand, T. H., and S. A. Cummer. “Frequency tunable electromagnetic metamaterial using ferroelectric loaded split rings.” Journal of Applied Physics 103, no. 6 (April 8, 2008). https://doi.org/10.1063/1.2898575.
Hand TH, Cummer SA. Frequency tunable electromagnetic metamaterial using ferroelectric loaded split rings. Journal of Applied Physics. 2008 Apr 8;103(6).
Hand, T. H., and S. A. Cummer. “Frequency tunable electromagnetic metamaterial using ferroelectric loaded split rings.” Journal of Applied Physics, vol. 103, no. 6, Apr. 2008. Scopus, doi:10.1063/1.2898575.
Hand TH, Cummer SA. Frequency tunable electromagnetic metamaterial using ferroelectric loaded split rings. Journal of Applied Physics. 2008 Apr 8;103(6).
Published In
Journal of Applied Physics
DOI
ISSN
0021-8979
Publication Date
April 8, 2008
Volume
103
Issue
6
Related Subject Headings
- Applied Physics
- 51 Physical sciences
- 49 Mathematical sciences
- 40 Engineering
- 09 Engineering
- 02 Physical Sciences
- 01 Mathematical Sciences