Department of Physics and State Key Laboratory of Low-Dimensional Quantum Physics, Tsinghua University, Beijing 100084, China.
Opt Lett. 2012 Jul 15;37(14):2853-5. doi: 10.1364/OL.37.002853.
Coherent manipulation of stored images is performed at low light levels based on enhanced cross-Kerr nonlinearity in a four-level N-type electromagnetically induced transparency (EIT) system. Using intensity masks in the signal pulse, quadratic phase shifts with low nonlinear absorption can be efficiently imprinted on the Fraunhofer diffraction patterns already stored in the EIT system. Fast-Fourier-transform-based numerical simulations clearly demonstrate that the far-field images of the retrieved probe light can be flexibly modulated by applying different signal fields. Our studies could help advance the goals of nonlinear all-optical processing for spatial information coherently stored in EIT systems.
基于四能级 N 型电磁感应透明(EIT)系统中的增强交叉克尔非线性,在低光强下实现了存储图像的相干操控。通过在信号脉冲中使用强度掩模,可以在 EIT 系统中已经存储的夫琅禾费衍射图案上有效地记录具有低非线性吸收率的二次相位移动。基于快速傅里叶变换的数值模拟清楚地表明,通过施加不同的信号场,可以灵活地调制检索探针光的远场图像。我们的研究有助于推动在 EIT 系统中相干存储的空间信息的非线性全光处理目标的发展。