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Amplification and Nonlinear Interaction of Space Charge Waves of Microwave Band in Heterogeneous Gallium Nitride Films

机译:异质氮化镓薄膜中微波波段空间电荷波的放大和非线性相互作用

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摘要

Theoretical study of amplification and nonlinear interaction of space charge waves caused by negative differential conductivity in gallium nitride n-GaN films placed over a semi-infinite substrate is presented. A general case of transversally heterogeneous films is considered. Hydrodynamic diffusion-drift equations for bulk electron concentration together with Poisson equation are used. Transversal heterogeneity leads to decreased electronic mobility near the film's surface and to decreased space amplification increments of space charge waves. Heterogeneous alloying may compensate the influence of surfaces on space amplification increments. Amplification of space charge waves in n-GaN films of sub-micron thickness on higher frequencies f≥ 100 GHz is possible in comparison to n-GaAs films. High output electric fields ~10 kV/cm can be obtained in the short-wave range of the millimeter band. Nonlinear interaction of space charge waves in n-GaN films is also considered using the diffusion-drift equation. The possibility of generating second and third multiples of input signal as well as amplification of combination frequencies is proven.
机译:提出了在半无限大衬底上氮化镓n-GaN薄膜中由负差分电导率引起的空间电荷波的放大和非线性相互作用的理论研究。考虑了横向异质膜的一般情况。使用了体电子浓度的流体动力学扩散-漂移方程和泊松方程。横向异质性导致膜表面附近的电子迁移率降低,并导致空间电荷波的空间放大增量降低。异质合金化可以补偿表面对空间放大增量的影响。与n-GaAs薄膜相比,可以在f≥100 GHz的更高频率下放大亚微米厚度的n-GaN薄膜中的空间电荷波。在毫米波段的短波范围内可获得〜10 kV / cm的高输出电场。使用扩散漂移方程还考虑了n-GaN膜中空间电荷波的非线性相互作用。产生输入信号的第二和第三倍数以及放大组合频率的可能性已得到证明。

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  • 来源
    《Radioelectronics and Communications Systems》 |2012年第7期|p.289-298|共10页
  • 作者单位

    Universidad Autonoma del Estado de Morelos (UAEM), Cuernavaca, Morelos, Mexico;

    Universidad Autonoma del Estado de Morelos (UAEM), Cuernavaca, Morelos, Mexico;

    Polytechnic University of Pachuca, Pachuca, Mexico;

    Universidad Autonoma del Estado de Morelos (UAEM), Cuernavaca, Morelos, Mexico;

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