首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Optically tunable terahertz-band interference fringe shift based on indium oxide
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Optically tunable terahertz-band interference fringe shift based on indium oxide

机译:基于氧化铟的光学调谐太赫兹带干涉条纹平移

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An optically tunable terahertz (THz)-band shift in interference fringes based on an indium oxide structure was investigated. An interference phenomenon formed by the combination of partial-through measurements with a shift in the periodic peaks in a THz time-domain spectroscopy system was reported. When the THz beam passes through the edge of the material sample, equally spaced interference fringes are obtained in the frequency domain and these interference fringes can be varied using a 450 nm external continuous-wave laser. The peak of the THz interference fringe shifts by almost half a period. This work offers the ability to observe THz-band interference fringes in the frequency domain and shows that these interference fringes change with variations in the intensity of the applied excitation light.
机译:研究了基于氧化铟结构的干涉条纹的光学调谐太赫兹(THz) - 带偏移。 报道了通过在THz时域光谱系统中的周期性峰的偏移的偏移量的组合形成的干扰现象。 当THz光束穿过材料样品的边缘时,在频域中获得等间隔的干涉条纹,并且可以使用450nm外部连续波激光器来改变这些干涉条纹。 THz干涉的峰值边缘差距近一段时间。 这项工作提供了观察频域中的THz带干扰条纹的能力,并表明这些干涉条纹在施加的激发光的强度的变化变化。

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