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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Quantum state reconstruction of spectral field modes: Homodyne and resonator detection schemes
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Quantum state reconstruction of spectral field modes: Homodyne and resonator detection schemes

机译:光谱场模式的量子态重构:同态和共振器检测方案

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摘要

We revisit the problem of quantum state reconstruction of light beams from the photocurrent quantum noise. As is well known, but often overlooked, two longitudinal field modes contribute to each spectral component of the photocurrent (sideband modes). We show that spectral homodyne detection is intrinsically incapable of providing all the information needed for the full reconstruction of the two-mode spectral quantum state. Such a limitation is overcome by the technique of resonator detection. A detailed theoretical description and comparison of both methods is presented, as well as an experiment to measure the six-mode quantum state of pump-signal-idler beams of an optical parametric oscillator above the oscillation threshold.
机译:我们从光电流量子噪声中重新审视光束的量子态重构问题。众所周知,但经常被忽略,两个纵向场模式对光电流的每个频谱分量都有贡献(边带模式)。我们表明,光谱零差检测本质上不能提供为完全重构双模光谱量子态所需的所有信息。通过谐振器检测技术克服了这种限制。给出了这两种方法的详细理论描述和比较,以及用于测量振荡阈值以上的光参量振荡器的泵浦信号-空闲信号束的六模量子态的实验。

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