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Optimization of sideband modulation in optical-heterodyne-downmixed electro-optic sensing

机译:光学外差缩混电光传感中边带调制的优化

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摘要

Enhancements of the modulation depth in an electro-optic sensing application, through optimization of the modulation sidebands in both an electro-optic modulator and a microcavity electro-optic probe, have been investigated. The principles and methods of optimizing the operational bias points for the devices are described from the point of view of both an electro-optic modulator and probe, and their different optimum characteristics for signal-modulation depth, due to their huge scale gap, are presented. We use an optical-heterodyne receiver employing a fast modulator along with the electro-optic sensing technique to achieve high-frequency microwave electric field mapping. The practical limitations to sensitivity enhancement, solutions for compensating distortion, and combined optimization conditions for both electro-optic modulation and sensing are presented by exploring the evolution of field-mapping distributions.
机译:通过优化电光调制器和微腔电光探头中的调制边带,研究了在电光传感应用中提高调制深度的方法。从电光调制器和探头的角度描述了优化器件工作偏置点的原理和方法,并介绍了由于其巨大的标尺间隙而导致的信号调制深度的不同最佳特性。 。我们使用采用快速调制器和电光传感技术的光外差接收器来实现高频微波电场映射。通过研究场映射分布的演变,提出了灵敏度提高的实际限制,补偿失真的解决方案以及电光调制和感测的组合优化条件。

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