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Information Transfer by Near-Infrared Surface-Plasmon-Polariton Waves on Silver/Silicon Interfaces

机译:银/硅界面上的近红外表面等离子体激元波的信息传递

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摘要

Electronic interconnections restrict the operating speed of microelectronic chips as semiconductor devices shrink. As surface-plasmon-polariton (SPP) waves are localized, signal delay and crosstalk may be reduced by the use of optical interconnections based on SPP waves. With this motivation, time-domain Maxwell equations were numerically solved to investigate the transport of information by an amplitude-modulated carrier SPP wave guided by a planar silicon/silver interface in the near-infrared spectral regime. The critical-point model was used for the permittivity of silicon and the Drude model for that of silver. The signal can travel long distances without significant loss of fidelity, as quantified by the Pearson and concordance correlation coefficients. The signal is partially reflected and partially transmitted without significant loss of fidelity, when silicon is terminated by air; however, no transmission occurs when silicon is terminated by silver. The fidelity of the transmitted signal in the forward direction rises when both silicon and silver are terminated by air. Thus, signals can possibly be transferred by SPP waves over several tens of micrometers in microelectronic chips.
机译:随着半导体器件的缩小,电子互连限制了微电子芯片的运行速度。由于表面等离子体激元(SPP)波被定位,因此可以通过使用基于SPP波的光学互连来减少信号延迟和串扰。在这种动机下,时域麦克斯韦方程组得到了数值求解,以研究在近红外光谱范围内由平面硅/银界面引导的调幅载波SPP波对信息的传输。临界点模型用于硅的介电常数,德鲁德模型用于银的介电常数。信号可以传播很长的距离,而不会显着降低保真度,如由Pearson和一致性相关系数所量化的。当硅被空气封端时,信号被部分反射和部分传输,而没有明显的保真度损失。但是,当硅被银封端时,不会发生传输。当硅和银都被空气终止时,正向传输信号的保真度会提高。因此,在微电子芯片中,信号可能会通过数十微米的SPP波传输。

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