Denker T, Schütte D, Wimmer M H, Wheatley T A, Huntington E H, Heurs M
Opt Express. 2015 Jun 29;23(13):16517-28. doi: 10.1364/OE.23.016517.
We propose and demonstrate a pump-phase locking technique that makes use of weak pump depletion (WPD) - an unavoidable effect that is usually neglected - in a sub-threshold optical parametric oscillator (OPO). We show that the phase difference between seed and pump beam is imprinted on both light fields by the non-linear interaction in the crystal and can be read out without disturbing the squeezed output. In our experimental setup we observe squeezing levels of 1.96 ± 0.01 dB, with an anti-squeezing level of 3.78 ± 0.02 dB (for a 0.55 mW seed beam at 1064 nm and 67.8 mW of pump light at 532 nm). Our new locking technique allows for the first experimental realization of a pump-phase lock by reading out the pre-existing phase information in the pump field. There is no degradation of the detected squeezed states required to implement this scheme.
我们提出并演示了一种泵浦相位锁定技术,该技术利用了亚阈值光学参量振荡器(OPO)中通常被忽略的弱泵浦耗尽(WPD)这一不可避免的效应。我们表明,种子光束和泵浦光束之间的相位差通过晶体中的非线性相互作用印刻在两个光场上,并且可以在不干扰压缩输出的情况下读出。在我们的实验装置中,我们观察到压缩水平为1.96±0.01 dB,反压缩水平为3.78±0.02 dB(对于1064 nm处0.55 mW的种子光束和532 nm处67.8 mW的泵浦光)。我们的新锁定技术通过读出泵浦场中预先存在的相位信息,首次实现了泵浦相位锁定的实验。实施该方案所需的检测到的压缩态不会退化。