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Microwave devices based on superconducting surface electromagnetic wave resonator (Review article)
Low Temperature Physics ( IF 0.8 ) Pub Date : 2020-04-01 , DOI: 10.1063/10.0000866
V. Malyshev 1 , G. Melkov 1 , O. Prokopenko 1
Affiliation  

In this paper we present an overview of the microwave properties of a surface electromagnetic wave resonator (SEWR) made on the basis of a superconducting film, and also consider possible applications of such resonators to create various microwave devices. Features of such a SEWR are the simplicity of its design (such a resonator, in fact, can be just the superconducting film itself on a dielectric substrate); a large amplitude of microwave electromagnetic field on the surface of the resonator’s superconducting film, which allows one to organize intense interaction of this field with the superconductor; the possibility of synchronous operation of integrated superconducting elements, embedded in the resonator, under the action of its microwave field. The review is based on our works published since 2000 and discusses the possible applications of superconducting SEWRs to create a new class of microwave filters, microwave signal generators and detectors, and other devices based on Josephson junctions.

中文翻译:

基于超导表面电磁波谐振器的微波器件(综述文章)

在本文中,我们概述了基于超导薄膜制成的表面电磁波谐振器 (SEWR) 的微波特性,并考虑了此类谐振器在制造各种微波器件方面的可能应用。这种 SEWR 的特点是设计简单(这种谐振器实际上可以只是介电基板上的超导膜本身);在谐振器的超导薄膜表面上有一个大振幅的微波电磁场,它允许人们组织该场与超导体的强烈相互作用;嵌入谐振器中的集成超导元件在其微波场的作用下同步运行的可能性。
更新日期:2020-04-01
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