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Optimizing an integrated waveguide modulator for sensitive low-frequency alternating-current electric-field sensors

机译:针对敏感的低频交流电场传感器优化集成波导调制器

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摘要

The use of integrated waveguide modulators is a common technique in electric-field sensing. However, the distortion in the modulated signal caused by high half-voltage V_π and the difficulty in obtaining low-frequency responses are challenging issues for the use of low-frequency alternating-current (AC) electric-field sensors. This study investigates the use of an optimized segmented slot waveguide as the core of a sensor to determine the sensor features that produce useful frequency responses and sensitivity. The segmented slot waveguide is optimized in terms of periodicity and segment width to produce low V_π and electrical bandwidth before testing the sensor sensitivity. The results show that reducing the segment width achieves a low V_π of 0.32 V and a very low electrical bandwidth of 4.3 kHz. Our study provides evidence of the feasibility of using a segmented slot waveguide as the primary element for highly sensitive, low-frequency AC electric-field sensors.
机译:集成波导调制器的使用是电场感应中的常用技术。然而,由高半电压V_π引起的调制信号的失真和难以获得低频响应对于使用低频交流(AC)电场传感器而言是具有挑战性的问题。这项研究调查使用优化的分段缝隙波导作为传感器的核心,以确定产生有用的频率响应和灵敏度的传感器功能。在测试传感器灵敏度之前,对分段缝隙波导进行了周期性和分段宽度优化,以产生低的V_π和电气带宽。结果表明,减小段宽度可实现0.32 V的低V_π和4.3 kHz的非常低的电气带宽。我们的研究提供了使用分段缝隙波导作为高灵敏度,低频交流电场传感器的主要元件的可行性证据。

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