波导氮化物介质中电磁束超外差放大的不同几何结构

J. Escobedo-Alatorre, V. Grimalsky, S. Koshevaya, M. Tecpoyotl-Torres
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引用次数: 0

摘要

研究了在波导氮化物n-GaN,n-InN膜介质中,两个电磁波与空间电荷波发生共振三波相互作用时,电磁波的超外差放大。研究了氮化物n-GaN,n-InN薄膜在太赫兹(THz)较低部分的频率f≤400GHz下由于负微分电导率引起的SCW波的放大。电磁波要么在太赫兹范围的上部,要么在光学范围内。超外差放大在两种几何结构中被考虑,共线几何结构中三个相互作用的波在同一方向上传播,而反共线几何结构第二个电磁波在相反方向上传播。指出了每种几何形状的优缺点。空间电荷波的有限宽度导致放大增量的减小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Different Geometries of Superheterodyne Amplification of Electromagnetic Beams in Waveguides Nitride-Dielectric
The superheterodyne amplification of electromagnetic waves is investigated when the resonant three-wave interaction of two electromagnetic waves with the space charge wave occurs in the waveguides nitride n-GaN, n-InN films-dielectric. The amplification of SCW waves due to the negative differential conductivity is investigated in nitride n-GaN, n-InN films at the frequencies f ≤ 400 GHz in the lower part of the terahertz (THz) range. The electromagnetic waves are either in the upper part of THz range or in the optical range. The superheterodyne amplification is considered in two geometries, the collinear one in which the three interacting waves travel in the same direction and the anti-collinear geometry where the second electromagnetic wave propagates in the opposite direction. The preferences and drawbacks of each geometry are pointed out. The finite width of space charge waves leads to decrease of increments of amplification.
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