Negative group delay in lumped-element C-L transmission lines

J. Barroso, J. E. B. Oliveira, O. Coutinho, U. Hasar
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Abstract

Superluminal group velocities, i. e., velocities greater than the speed of light in vacuum, infinite or even negative, have been experimentally observed in the optical, electronic, and microwave domains. Such velocities in no way contradict special relativity because group velocity does not represent, in general, the velocity of a signal or information. Although it may seem counterintuitive, superluminal phenomena and the resulting negative-group-delay (NGD) effects find a variety of applications such as ultra-wide-band phase shifters, high-speed microelectronic interconnections, pulse shaping, delay control, dispersion compensations, and wave-packet switching, for instance. This paper reports on negative group velocities in a lumped C-L line, where capacitors C and inductors L connected to resistors are placed, respectively, in the series and shunt branches of the periodic line. The NGD effects are induced by ohmic dissipation due to the resistors which establish a frequency range in which NGD propagation is allowed. This finding is numerically demonstrated by injecting into the line a 180 kHz modulated Gaussian pulse, with a full width at half maximum of 22.20 μ«, for which the negative time delay of −1.26 μs determined from the numerical solution of circuit equations is in good agreement with that predicted by the analytical dispersion relation of the periodic structure.
集总元C-L传输线的负群延迟
超光速群速度,即在真空中大于光速的速度,无限大甚至是负的速度,已经在光学、电子和微波领域被实验观察到。这样的速度与狭义相对论并不矛盾,因为群速度通常并不代表信号或信息的速度。虽然这看起来可能违反直觉,但超光速现象和由此产生的负群延迟(NGD)效应有各种各样的应用,例如超宽带移相器、高速微电子互连、脉冲整形、延迟控制、色散补偿和波包交换。本文报道了集总C-L线的负群速度,其中电容C和电感L分别在周期线的串联支路和分流支路上与电阻相连。NGD效应是由电阻引起的欧姆损耗引起的,电阻建立了允许NGD传播的频率范围。这一发现在数值上得到了验证,在线路中注入一个半宽为22.20 μ«的180 kHz调制高斯脉冲,由电路方程的数值解确定的- 1.26 μs的负时延与周期结构的解析色散关系预测的结果很好地吻合。
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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