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High-stability time-domain balanced homodyne detector for ultrafast optical pulse applications

机译:高稳定性时域平衡零差探测器,用于超快光脉冲应用

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摘要

Low-noise, efficient, phase-sensitive time-domain optical detection is essential for foundational tests of quantum physics based on optical quantum states and the realization of numerous applications ranging from quantum key distribution to coherent classical telecommunications. Stability, bandwidth, efficiency, and signal-to-noise ratio are crucial performance parameters for effective detector operation. Here we present a high-bandwidth, low-noise, ultra-stable time-domain coherent measurement scheme based on balanced homodyne detection ideally suited to characterization of quantum and classical light fields in well-defined ultrashort optical pulse modes.
机译:低噪声,高效,对相位敏感的时域光学检测对于基于光学量子态的量子物理学基础测试以及从量子密钥分发到相干经典电信的众多应用的实现至关重要。稳定性,带宽,效率和信噪比是有效检测器操作的关键性能参数。在这里,我们提出了一种基于平衡零差检测的高带宽,低噪声,超稳定的时域相干测量方案,非常适合于在定义明确的超短光脉冲模式下表征量子和经典光场。

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