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Bichromatic Local Oscillator for Detection of Two-Mode Squeezed States of Light

机译:用于检测光的双模压缩状态的双色本振

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摘要

We present a new technique for the detection of two-mode squeezed states of light that allows for a simple characterization of these quantum states. The usual detection scheme, based on heterodyne measurements, requires the use of a local oscillator with a frequency equal to the mean of the frequencies of the two modes of the squeezed field. As a result, unless the two modes are close in frequency, a high-frequency shot-noise-limited detection system is needed. We propose the use of a bichromatic field as the local oscillator in the heterodyne measurements. By the proper selection of the frequencies of the bichromatic field, it is possible to arbitrarily select the frequency around which the squeezing information is located, thus making it possible to use a low-bandwidth detection system and to move away from any excess noise present in the system.
机译:我们提出了一种检测光的双模压缩状态的新技术,该技术可以简单地表征这些量子态。基于外差测量的常规检测方案需要使用频率等于被压缩场的两种模式的频率平均值的本地振荡器。结果,除非两种模式的频率接近,否则需要高频散粒噪声限制检测系统。我们建议在外差测量中使用双色场作为本地振荡器。通过适当选择双色场的频率,可以任意选择压缩信息所在的频率,从而可以使用低带宽检测系统,并避免出现在系统中的任何多余噪声。系统。

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