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Subpicosecond components for quasi-optical spatial electromagnetic signal processing

机译:用于准光空间电磁信号处理的子秒分量

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The paper presents new results in the field of super high- speed signal processing. For this purpose we suggested to write digital information into spatial structures (topology) of electromagnetic field pulses. It allows to use passive circuits for fulfillment spatial logical operations. Main physical effects in solids and micron circuits, which influence on time delay of signals, are considered. In accordance to the physical analysis passive circuits of micron size allow to process spatially modulated signals with time delay less than one picosecond. This fact is confirmed by theoretical modeling transients in strip transmission circuits elements and in logical components for spatial signal processing. It is considered theoretical results of modeling several logical circuits for spatially- modulated signal processing and experimental technique for their researchers. The best field of application of the new circuits is quasi-holographic circuits for parallel signal processing. The considered results are interesting in the field of super high-speed applications, microwave-optical engineering, terahertz technique.
机译:本文提出了超高速信号处理领域的新结果。为此目的,我们建议将数字信息写入电磁场脉冲的空间结构(拓扑)。它允许使用无源电路来满足空间逻辑运算。考虑了固体和微循环中的主要物理效果,其影响信号的时间延迟。根据物理分析微米尺寸的无源电路允许在时间延迟小于一个皮秒的时间延迟处理空间调制的信号。通过条带传输电路元件和用于空间信号处理的理论建模瞬变和空间信号处理的逻辑组件来确认该事实。它被认为是用于对其研究人员进行空间调制信号处理和实验技术建模若干逻辑电路的理论结果。新电路的最佳应用领域是用于并行信号处理的准全息电路。考虑的结果在超高速应用,微波 - 光学工程,太赫兹技术领域有趣。

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