Ma Rong, Liu Wei, Qin Zhongzhong, Su Xiaolong, Jia Xiaojun, Zhang Junxiang, Gao Jiangrui
Opt Lett. 2018 Mar 15;43(6):1243-1246. doi: 10.1364/OL.43.001243.
Using a nondegenerate four-wave mixing (FWM) process based on a double-Λ scheme in hot cesium vapor, we demonstrate a compact diode-laser-pumped quantum light source for the generation of quantum correlated twin beams with a maximum squeezing of 6.5 dB. The squeezing is observed at a Fourier frequency in the audio band down to 0.7 kHz which, to the best of our knowledge, is the first observation of sub-kilohertz intensity-difference squeezing in an atomic system so far. A phase-matching condition is also investigated in our system, which confirms the spatial-multi-mode characteristics of the FWM process. Our compact low-frequency squeezed light source may find applications in quantum imaging, quantum metrology, and the transfer of optical squeezing onto a matter wave.
利用热铯蒸汽中基于双Λ型结构的非简并四波混频(FWM)过程,我们展示了一种紧凑的二极管激光泵浦量子光源,用于产生最大压缩度为6.5 dB的量子关联孪生光束。在音频频段低至0.7 kHz的傅里叶频率处观察到了压缩,据我们所知,这是迄今为止在原子系统中首次观察到亚千赫兹强度差压缩。我们还研究了系统中的相位匹配条件,这证实了FWM过程的空间多模特性。我们紧凑的低频压缩光源可能在量子成像、量子计量以及将光学压缩转移到物质波方面找到应用。