Zhang Yanpeng, Khadka Utsab, Anderson Blake, Xiao Min
Department of Physics, University of Arkansas, Fayetteville, Arkansas 72701, USA and Key Laboratory for Physical Electronics and Devices of the Ministry of Education, Xi'an Jiaotong University, Xi'an 710049, China.
Phys Rev Lett. 2009 Jan 9;102(1):013601. doi: 10.1103/PhysRevLett.102.013601. Epub 2009 Jan 7.
Using phase control between four-wave mixing (FWM) and six-wave mixing (SWM) channels in a four-level atomic system, we demonstrate temporal and spatial interferences between these two nonlinear optical processes. Efficient and coexisting FWM and SWM signals are produced in the same electromagnetically induced transparency window via atomic coherence. The temporal interference has a femtosecond time scale corresponding to the optical transition frequency. Such studies of intermixing between different order nonlinear optical processes with a controllable phase delay can have important applications in high-precision measurements, coherence quantum control, and quantum information processing.
通过在四能级原子系统中对四波混频(FWM)和六波混频(SWM)通道之间进行相位控制,我们展示了这两个非线性光学过程之间的时间和空间干涉。通过原子相干性,在同一个电磁诱导透明窗口中产生了高效且共存的FWM和SWM信号。时间干涉具有与光学跃迁频率相对应的飞秒时间尺度。这种对具有可控相位延迟的不同阶非线性光学过程之间混合的研究,在高精度测量、相干量子控制和量子信息处理方面可能具有重要应用。