Dual-tunable hybrid wave ferrite-ferroelectric microwave resonator

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Dual-tunable hybrid wave ferrite-ferroelectric microwave resonator

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A novel electric and magnetic field tunable microwave resonator with a yttrium iron garnet and barium strontium titanate layered structure is investigated. The measured characteristics at 3.6 GHz, corresponding to the proximity of magnetic and dielectric resonance modes, show a broadband electrical tunability. A tuning range of 1.5% of the central resonance frequency is obtained for nominal electric fields.

Inspec keywords: multilayers; tuning; dielectric resonance; resonators; magnetic resonance; magnetic microwave devices; ferrite devices; strontium compounds; ferroelectric devices; garnets; barium compounds; yttrium compounds; iron compounds

Other keywords: dielectric resonance mode; YIG; Y3Fe5O12; electric field tunable microwave resonator; barium strontium titanate; magnetic resonance mode; central resonance frequency; (BaSr)TiO3; ferrite-ferroelectric microwave resonator; 3.6 GHz; magnetic field tunable microwave resonator; dual-tunable hybrid wave microwave resonator; yttrium iron garnet; broadband electrical tunability

Subjects: Microwave magnetic devices; Waveguide and microwave transmission line components; Ferrites and garnets; Ferroelectric devices

References

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      • J.D. Adam , L.E. Davis , G.F. Dionne , E.F. Schloemann , S.N. Stitzer . Ferrite devices and material. IEEE Trans. Microw. Theory Tech. , 721 - 737
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    4. 4)
    5. 5)
      • A.A. Semenov , S.F. Karmanenko , V.E. Demidov , B.A. Kalinikos , G. Srinivasan , A.N. Slavin , J.V. Mantese . Ferrite-ferroelectric layered structures for electrically and magnetically tunable microwave resonators. Appl. Phys. Lett. , 33503 - 1–3
http://iet.metastore.ingenta.com/content/journals/10.1049/el_20060164
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