Theory and Applications of Multiport Structures using Magnetostatic Waves

S. Zagriadski
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引用次数: 3

Abstract

This paper reports an electrodynamic analysis and possible applications of tunable multiport ferrite-dielectric structures with parallel transmission lines of an arbitrary type coupled through magnetostatic modes of magnetized multilayered thin ferrite films. The structures are supposed to be excited at one port by a falling electromagnetic wave and amplitudes and phases of electromagnetic waves at other ports are obtained in the result of an analytical procedure. The model is valid for an arbitrary direction of a magnetizing field and can describe the generation and interaction of magnetostatic modes due to the finite width of ferrite films. A reaction of magnetostatic waves on transducers' magnetic fields which produce them is taken into account. Derived closed-form expressions for response functions of multiports provide the base for modeling and design of a wide class of magnetostatic wave devices: multichannel adjustable filters and delay lines, directional couplers, power dividers, multiport resonators. The theory is also applicable for the analysis of multiport and interdigital transducers. In conventional two-port filters and delay lines a mutual coupling of trarnsducers is proved to be responsible for passband ripples in frequency responses.
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利用静磁波的多端口结构理论与应用
本文报道了通过磁化多层铁氧体薄膜的静磁模式耦合任意类型的平行传输线的可调谐多端口铁氧体-介电结构的电动力学分析和可能的应用。该结构假定在一个端口受到下降的电磁波的激励,并在分析过程中得到其他端口的电磁波幅值和相位。该模型适用于任意方向的磁场,可以描述由于铁氧体薄膜宽度有限而产生的静磁模式及其相互作用。考虑了静磁波对产生它们的换能器磁场的反应。导出的多端口响应函数的封闭表达式为多种静磁波器件的建模和设计提供了基础:多通道可调滤波器和延迟线、定向耦合器、功率分配器、多端口谐振器。该理论也适用于多端口和数字间换能器的分析。在传统的双端口滤波器和延迟线中,换能器的相互耦合被证明是频率响应中的通带波纹的原因。
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