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用于混合连续变量/离散变量量子光学的原子滤波

Atomic filtering for hybrid continuous-variable/discrete-variable quantum optics.

作者信息

Zielińska Joanna A, Beduini Federica A, Lucivero Vito Giovanni, Mitchell Morgan W

出版信息

Opt Express. 2014 Oct 20;22(21):25307-17. doi: 10.1364/OE.22.025307.

Abstract

We demonstrate atomic filtering of frequency-degenerate photon pairs from a sub-threshold optical parametric oscillator (OPO). The filter, a modified Faraday anomalous dispersion optical filter (FADOF), achieves 70% peak transmission simultaneous with 57 dB out-of-band rejection and a 445 MHz transmission bandwidth. When applied to the OPO output, only the degenerate mode, containing one-mode squeezed vacuum, falls in the filter pass-band; all other modes are strongly suppressed. The high transmission preserves non-classical continuous-variable features, e.g. squeezing or non-gaussianity, while the high spectral purity allows reliable discrete-variable detection and heralding. Correlation and atomic absorption measurements indicate a spectral purity of 96% for the individual photons, and 98% for the photon pairs. These capabilities will enable generation of atom-resonant hybrid states, e.g. "Schrödinger kittens" obtained by photon subtraction from squeezed vacuum, making these exotic states available for quantum networking and atomic quantum metrology applications.

摘要

我们展示了从亚阈值光学参量振荡器(OPO)中对频率简并光子对进行原子滤波。该滤波器是一种改进的法拉第反常色散光学滤波器(FADOF),实现了70%的峰值透过率,同时具有57 dB的带外抑制和445 MHz的传输带宽。当应用于OPO输出时,只有包含单模压缩真空的简并模式落在滤波器通带内;所有其他模式都被强烈抑制。高透过率保留了非经典连续变量特征,例如压缩或非高斯性,而高光谱纯度允许进行可靠的离散变量检测和预示。相关性和原子吸收测量表明,单个光子的光谱纯度为96%,光子对的光谱纯度为98%。这些能力将使原子共振混合态的产生成为可能,例如通过从压缩真空中减去光子获得的“薛定谔小猫”,使这些奇特的态可用于量子网络和原子量子计量应用。

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