Liu Nannan, Liu Yuhong, Li Jiamin, Yang Lei, Li Xiaoying
Opt Express. 2016 Feb 8;24(3):2125-33. doi: 10.1364/OE.24.002125.
Multimode squeezed states are essential resources in quantum information processing and quantum metrology with continuous variables. Here we present the experimental generation of squeezed vacuum via the degenerate four wave mixing realized by pumping a piece of dispersion shifted fiber with mode-locked ultrafast pulse trains. The noise fluctuation is lower than the shot noise limit by 1.1 ± 0.08 dB (1.95 ± 0.17 dB after correction for detection losses). The detailed investigation illustrates that the results can be further improved by suppressing Raman scattering and by reshaping the spectrum of the local oscillator to achieve the required mode-matching of the homodyne detection system. Our study is useful for developing a compact fiber source of multi-mode squeezed vacuum.
多模压缩态是量子信息处理和连续变量量子计量学中的重要资源。在此,我们展示了通过用锁模超快脉冲序列泵浦一段色散位移光纤实现简并四波混频来实验产生压缩真空。噪声涨落比散粒噪声极限低1.1±0.08分贝(校正检测损耗后为1.95±0.17分贝)。详细研究表明,通过抑制拉曼散射和重塑本地振荡器的频谱以实现零差检测系统所需的模式匹配,结果可以进一步改善。我们的研究对于开发紧凑型多模压缩真空光纤源很有用。