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首页> 外文期刊>Optics Letters >Ultrasensitive pulsed, balanced homodyne detector: application to time-domain quantum measurements
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Ultrasensitive pulsed, balanced homodyne detector: application to time-domain quantum measurements

机译:超灵敏脉冲,平衡零差探测器:应用于时域量子测量

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摘要

A pulsed, balanced homodyne detector has been developed for precise measurement of the electric field quadratures of pulsed optical quantum states. A high level of common mode suppression (>85 dB) and low electronic noise (730 electrons per pulse) provide a signal-to-noise ratio of 14 dB for measurement of the quantum noise of individual pulses. Measurements at repetition rates as high as 1 MHz are possible. As a test, quantum tomography of the coherent state was performed, and the Wigner function and the density matrix were reconstructed with 99.5% fidelity. The detection system can be used for ultrarsensitive balanced detection in cw mode, e.g., for weak absorption measurements.
机译:已经开发了一种脉冲平衡的零差检测器,用于精确测量脉冲光学量子态的电场正交。高水平的共模抑制(> 85 dB)和低电子噪声(每个脉冲730个电子)为测量单个脉冲的量子噪声提供了14 dB的信噪比。可以以高达1 MHz的重复频率进行测量。作为测试,执行了相干态的量子层析成像,并以99.5%的保真度重建了维格纳函数和密度矩阵。该检测系统可用于连续模式的超灵敏平衡检测,例如用于弱吸收测量。

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