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Terahertz instability of surface optical-phonon polaritons that interact with surface plasmon polaritons in the presence of electron drift

机译:存在电子漂移时与表面等离子体激元相互作用的表面光学声子极化子的太赫兹不稳定性

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Traveling-wave interaction between optical phonons and electrons drifting in diatomic semiconductors has potential for amplification and generation of terahertz radiation. Existing models of this interaction were developed for infinite materials. As a more practically relevant configuration, we studied theoretically a finite semiconductor slab surrounded by a dielectric. This paper analyzes the optical-phonon instability in the slab including the Lorentz force and compares it to the instability in an infinite material. As the analysis shows, the slab instability occurs because of the interaction of surface optical-phonon polaritons with surface plasmon polaritons in the presence of electron drift. The properties of the instability depend on the slab thickness when the thickness is comparable to the wavelength. For large slab thicknesses, however, the dispersion relation of the slab is similar to that of an infinite material, although the coupling is weaker. The results could be used for the design of practical terahertz traveling-wave oscillators and amplifiers.
机译:光子与电子在双原子半导体中漂移之间的行波相互作用具有放大和产生太赫兹辐射的潜力。已针对无限材料开发了这种交互作用的现有模型。作为更实际相关的配置,我们在理论上研究了被电介质包围的有限半导体平板。本文分析了包括洛伦兹力在内的平板中的光子声子不稳定性,并将其与无限材料中的不稳定性进行了比较。分析表明,由于存在电子漂移,表面光子-声子极化子与表面等离激元极化子相互作用,从而产生了平板不稳定性。当厚度与波长相当时,不稳定性的性质取决于平板的厚度。然而,对于较大的板坯厚度,尽管耦合较弱,但板坯的色散关系类似于无限材料的色散关系。结果可用于实际的太赫兹行波振荡器和放大器的设计。

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