Xin Jun, Qi Jian, Jing Jietai
Opt Lett. 2017 Jan 15;42(2):366-369. doi: 10.1364/OL.42.000366.
A maximal joint quadrature squeezing of -6.8±0.4 dB is experimentally obtained by a scheme of cascaded four-wave mixing (FWM) processes, which gives strong proof about the inseparability or entanglement between output of the twin beams from the system. Here joint quadrature is the difference between the two quadratures of the twin beam output from the cascaded FWM processes. This result is enhanced by about 3.1 dB, compared with the one of the single FWM process. We also study the gain dependence of the entanglement enhancement in this cascaded system. Theoretical predictions with the considerations of the losses in the experiment are also studied, and a similar trend in the low-gain regime can be found between the experimental results and the theoretical predictions. The scheme of cascaded FWM processes, which can be used to improve or even manipulate the degree of the entanglement between the output fields from the single FWM process, may find its applications in the continuous-variable quantum communication protocols.
通过级联四波混频(FWM)过程的方案,实验上获得了-6.8±0.4 dB的最大联合正交压缩,这有力地证明了该系统中孪生光束输出之间的不可分离性或纠缠。这里的联合正交是级联FWM过程输出的孪生光束的两个正交之间的差值。与单个FWM过程的结果相比,该结果提高了约3.1 dB。我们还研究了该级联系统中纠缠增强的增益依赖性。考虑到实验中的损耗,对理论预测也进行了研究,并且在实验结果和理论预测之间可以发现低增益区域存在类似的趋势。级联FWM过程的方案可用于改善甚至操纵单个FWM过程输出场之间的纠缠程度,可能会在连续变量量子通信协议中找到应用。