论文标题

使用可切换的VO2镜子来感知Fabry-Perrot Thz腔的增强

Sensing enhancement of a Fabry-Perot THz cavity using switchable VO2 mirrors

论文作者

Papari, Gian Paolo, Pellegrino, Anna Lucia, Malandrino, Graziella, Andreone, Antonello

论文摘要

我们通过实验研究了在THZ方案中运行的开放腔的传感特性,并通过使用镜像在硅平行板上生长并通过可变长度隔开的镜子来实现。 VO2的相变用于控制两个不同响应之间系统的行为:对入射辐射的高传输模式(在绝缘状态下的VO2)和对腔屈光指标的微小变化的高灵敏度(在导电状态下的VO2)。在第一个状态下,低损耗状态使能够调整腔长度并轻松优化SI板和腔体积中的Fabry-Perot(FP)效应引起的共振。通过抑制板中的FP振荡,可以激活金属状状态,从而促进了梳状光谱的发作,该光谱可以被用作准确的传感应用程序的多功能工具。使用分析模型和全波模拟,我们估计了腔体积折射率变化的设备响应,表明所提出的结构可以在THZ传感器报告的最高报告中实现灵敏度值。

We experimentally investigate the sensing properties of an open cavity operating in the THz regime and realized by employing as mirrors two thin vanadium dioxide (VO2) films grown on silicon parallel plates and separated by a variable length. The phase transition of VO2 is used to control the behavior of the system between two different responses: a high transmission mode to the incident radiation (VO2 in the insulating state) and a high sensitivity to tiny changes in the cavity refractive index (VO2 in the conducting state). In the first state, the low loss regime enables to adjust the cavity length and easily optimize the resonances due to the Fabry-Perot (FP) effect in the Si plates and in the cavity volume. The activation of the metallic-like state instead, by damping the FP oscillations in the plates, promotes the onset of a comb-like spectrum that can be exploited as a versatile tool for accurate sensing applications. Using both an analytical model and full-wave simulations, we estimate the device response to variation in the refractive index of the cavity volume, showing that the proposed structure can achieve sensitivity values among the highest reported for THz sensors.

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