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Thin-film lithium niobate modulators or non-invasive sensing of high-frequency electric fields

机译:薄膜铌酸锂调节剂或高频电场的非侵入性感应

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We propose a non-invasive, large-bandwidth electro-optic (EO) detection scheme for high-frequency electric fields using thin-film lithium niobate Mach-Zehnder interferometers. Our proof-of-concept device is capable of detecting high-strength electric fields, such as those present in x-ray free electron lasers and linear accelerators. The proposed detection scheme utilizes an off-the-shelf C-band fiber optic continuous-wave laser and optical spectrum analyzer, which has a lower system cost and footprint compared to bulk-crystal-based schemes. Towards this objective, fabricated devices are characterized in the 1-40 GHz frequency range to estimate the detection threshold, detection bandwidth, and EO modulation strength. The characterized device exhibits a 0.13 V . m(-1) . Hz(-1/2) normalized electric field sensitivity. By extrapolating the measured frequency response, it is expected that the characterized device will be able to detect free-space electric fields up to 150 GHz. (C) 2021 Optical Society of America
机译:我们提出了一种利用薄膜铌酸锂马赫-曾德尔干涉仪对高频电场进行无创、大带宽电光探测的方案。我们的概念验证设备能够检测高强度电场,比如x射线自由电子激光器和线性加速器中的电场。所提出的检测方案利用现成的C波段光纤连续波激光器和光谱分析仪,与基于块体晶体的方案相比,该方案具有更低的系统成本和占地面积。为了实现这一目标,在1-40GHz的频率范围内对制造的器件进行表征,以估计检测阈值、检测带宽和EO调制强度。所描述的器件显示出0.13 V的电压。m(-1)。赫兹(-1/2)标准化电场灵敏度。通过外推测得的频率响应,预计所描述的设备将能够检测高达150 GHz的自由空间电场。(2021)美国光学学会

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