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Mach–Zehnder Interferometer-Based Integrated Terahertz Temperature Sensor

机译:基于马赫曾德尔干涉仪的集成太赫兹温度传感器

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摘要

A plasmonic Mach-Zehnder interferometer (MZI) for temperature sensing is reported in the terahertz (THz) regime. The MZI is formed by embedding a semiconductor (SC) layer into a silicon membrane, where the SC layer supports two independent propagating surface plasmon polariton (SPP) waves on both surfaces. The temperature-sensitive phase difference between these two SPP waves gives rise to the modulation of the transmitted intensity. The results show that the MZI sensor possesses a sensitivity and a figure of merit as high as 8.9 × 10-3 THz/K and 117, respectively. Theoretical calculations indicate that the further improvement in sensing performance is still possible through optimization of the structure Moreover, an investigation of structural perturbations indicates that the MZI has a good tolerance to the fabrication errors. The compact MZI-based waveguide structure may find important applications in areas of sensing and integrated THz circuits.
机译:据报道,在太赫兹(THz)状态下,用于温度感测的等离子马赫曾德尔干涉仪(MZI)。通过将半导体(SC)层嵌入到硅膜中来形成MZI,其中SC层在两个表面上都支持两个独立的传播表面等离子体激元(SPP)波。这两个SPP波之间的温度敏感相位差引起了透射强度的调制。结果表明,MZI传感器的灵敏度和品质因数分别高达8.9×10-3 THz / K和117。理论计算表明,通过优化结构,仍可以进一步改善传感性能。此外,对结构扰动的研究表明,MZI具有良好的制造误差容忍度。紧凑的基于MZI的波导结构可能在传感和集成THz电路领域中找到重要的应用。

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