Generation of high-frequency radiation in bi-modal electrodynamic system filled by asymmetric multilayer heterostructure

A. Kozyrev
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Abstract

A method of direct transformation of a video pulse into a radio pulse in a microstrip transmission line (TL) filled with a nonlinear medium on the basis of a multilayer heterostructure (MLHS) with asymmetric barriers (AlAs/n-GaAs/Al/sub x/Ga/sub 1-x/As/n/sup +/GaAs/AlAs)/sub N/ has been suggested by A.M. Belyantsev and A.B. Kozyrev (Int. J. Inf. and MM Waves, vol. 18, p. 1169, 1997). The mechanism for the transformation is the electromagnetic shock-wave (EMSW) front instability towards the forward wave running in synchronism with it. In this paper, we study the special features of the direct transformation of a video pulse into a radio pulse in a bi-modal electrodynamic system of the coupled TL type with different types of dispersion allowing backward wave propagation.
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非对称多层异质结构填充的双峰电动力系统高频辐射的产生
在非线性介质填充的微带传输线(TL)中,利用具有非对称势垒(AlAs/n-GaAs/Al/sub x/Ga/sub 1-x/As/n/sup +/GaAs/AlAs)/sub n/的多层异质结构(MLHS),提出了一种将视频脉冲直接转换为无线电脉冲的方法别扬采夫和A.B.科济列夫(英)J. f.和MM波,第18卷,第1169页,1997年)。这种转变的机理是电磁激波锋面向与之同步的正向波的不稳定性。本文研究了允许反向波传播的具有不同色散类型的耦合TL型双峰电动力系统中视频脉冲直接转化为射电脉冲的特性。
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