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Quasi-Monomode Resonator for Ka-Band Applications

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dc.contributor.author Pazynin, Vadym
dc.contributor.author Begimova, Asel
dc.contributor.author Burambayeva, Nursaule
dc.contributor.author Sirenko, Kostyantyn
dc.contributor.author Yashina, Nataliya
dc.contributor.author Keusgen, Wilhelm
dc.date.accessioned 2026-03-16T10:38:01Z
dc.date.available 2026-03-16T10:38:01Z
dc.date.issued 2024
dc.identifier.issn 19378718
dc.identifier.other doi:10.2528/PIERC24040304
dc.identifier.uri http://repository.enu.kz/handle/enu/30410
dc.description.abstract The paper presents a model of an open resonator exhibiting a single high-Q eigen oscillation within a one-octave frequency band. The resonator is synthesized by integrating a diffraction radiation antenna, which comprises a segment of a dielectric waveguide above a metal substrate with a diffraction grating, into a system of flat reflectors aligned parallel to the wave fronts of surface and bulk waves generated by the antenna. A pulse response with an amplitude-frequency characteristic featuring one pronounced resonant maximum, which corresponds to an eigen oscillation with Q factor exceeding 104 , has been achieved in the proposed system. The optical length of the resonator exceeds the wavelength of the working oscillation by over 50 times. The feasibility of tuning the resonator via moving both the mirrors and the diffraction grating is demonstrated. The proposed model holds promise for applications in the development of solid-state and quantum radiation sources operating in the microwave and higher frequency ranges. ru
dc.language.iso en ru
dc.publisher Progress In Electromagnetics Research C ru
dc.relation.ispartofseries Vol. 146, 13-20;
dc.title Quasi-Monomode Resonator for Ka-Band Applications ru
dc.type Article ru


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