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Broadband Fast-Wave Propagation in a Non-Foster Circuit Loaded Waveguide

机译:非福斯特电路负载波导中的宽带快速波传播

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摘要

Frequency independent fast-wave (FW) propagation with phase velocity greater than the speed of light can be ideally realized in a dielectric medium whose relative permittivity is positive, but less than 1. Conventionally, FW propagation is implemented by non-TEM waveguides or antiresonance-based metamaterials, which suffers from the narrow bandwidth due to the dispersion. In contrast, non-Foster circuits provide a brand new method for reducing the dispersion so as to broaden the bandwidth. This paper demonstrates broadband FW propagation in a microstrip line that is periodically loaded with non-Foster circuits. Discrete transistor-based non-Foster circuits functioning as negative capacitors are successfully designed with the novel modified negative impedance converter circuits. A $-$ 10-pF negative capacitor over a bandwidth of 10–150 MHz has been implemented. The fabricated circuits have been integrated into a microstrip line to form a FW waveguide. The retrieved phase velocity of the effective medium from the measured $S$ -parameters characterizes a stable and causal FW medium with constant phase velocity of $1.2c$ from 60 to 120 MHz, and this has been further verified by Kramers–Kronig relations and the near-field measurements along the waveguide. In conclusion, a stable, causal, and broadband FW waveguide has been achieved by means of transistor-based non-Foster circuits. The implemented broadband FW propagation can potentially be applied in broadband leaky-wave antennas and cloaking techniques.
机译:在相对介电常数为正但小于1的介电介质中,可以理想地实现相位速度大于光速的频率独立快速波(FW)传播。通常,FW传播是通过非TEM波导或反共振实现的-基超材料,由于分散而遭受窄带宽的困扰。相反,非福斯特电路提供了一种全新的方法来减少色散,从而扩大带宽。本文演示了宽带FW在微带线中的传播,该微带线定期加载非Foster电路。使用新型改进型负阻抗转换器电路成功设计了用作负电容器的基于晶体管的分立非福斯特电路。已经实现了在10–150 MHz带宽范围内的$-$ 10-pF负电容器。所制造的电路已经集成到微带线中,以形成FW波导。从测量的$ S $参数中检索到的有效介质的相速度表征了稳定的和因果的FW介质,在60至120 MHz范围内的恒定相速度为$ 1.2c $,这一点已通过Kramers-Kronig关系和沿波导的近场测量。总之,已经通过基于晶体管的非福斯特电路实现了稳定,因果且宽带的FW波导。已实现的宽带FW传播可以潜在地应用于宽带漏波天线和隐身技术。

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