Design and modeling of low-loss symmetric slow-wave transmission lines

Amin Kianinejad, Zhi Ning Chen, C. Qiu
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引用次数: 5

Abstract

This paper theoretically models and experimentally verifies a low-loss spoof surface plasmon (SSP) mode-based transmission line. A circuit model is proposed for a symmetric SSP structure and the dispersion curve, cut off frequency and Bloch impedance of the periodic structure are calculated. A compact mode converter is proposed and verified experimentally for the connection to coplanar waveguides (CPWs) to form a low-loss slow-wave transmission line (SW-TL). The proposed design is compared with a conventional transmission line and its excellent performance is experimentally evidenced. Operating as a low loss TL, the SW-TL is ready for possible MMIC applications, taking advantage of its ultrathin planarity, highly confined fields, and flexible structure.
低损耗对称慢波传输线的设计与建模
本文对基于低损耗欺骗表面等离子体(SSP)模式的传输线进行了理论建模和实验验证。提出了对称SSP结构的电路模型,并计算了周期结构的色散曲线、截止频率和布洛赫阻抗。提出了一种紧凑型模式变换器,并通过实验验证了其与共面波导(cpw)连接形成低损耗慢波传输线的可行性。通过与传统传输线的比较,实验证明了该设计方案的优良性能。SW-TL作为一种低损耗TL,凭借其超薄的平面度、高度受限的磁场和灵活的结构,可以应用于MMIC。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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