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Light storage based on four-wave mixing and electromagnetically induced transparency in cold atoms

机译:基于四波混合的光存储和冷原子中的电磁感应透明性

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We performed an experiment to observe the storage of an input probe field and an idler field generated through an off-axis four-wave mixing (FWM) process via a double-Λ configuration in a cold atomic ensemble. We analyzed the underlying physics in detail and found that the retrieved idler field came from two parts if there was no single-photon detuning for the pump pulse: Part 1 was from the collective atomic spin (the input probe field, the coupling field, and the pump field combined to generate the idler field through FWM; then the idler was stored through electromagnetically induced transparency). Part 2 was from the generated new FWM process during the retrieval process (the retrieved probe field, the coupling field, and the pump field combined to generate a new FWM signal). If there was single-photon detuning for the pump pulse, then the retrieved idler was mainly from part 2. The retrieved two fields exhibited damped oscillations with the same oscillatory period when a homogeneous external magnetic field was applied, which was caused by the Larmor spin precession. We also experimentally realized the storage and retrieval of an image of light using FWM, in which an image was added into the input signal. After the storage, the retrieved idler beams and input signal carried the same image. This image storage technique holds promise for applications in image processing, remote sensing, and quantum communication.
机译:我们进行了一项实验,以观察在冷原子集合中通过双Λ配置通过离轴四波混合(FWM)过程生成的输入探针场和惰轮场的存储。我们详细分析了基础物理学,发现如果没有单光子对泵浦脉冲的失谐,则检索到的惰轮场来自两部分:第一部分来自集体原子自旋(输入探针场,耦合场和泵浦场通过FWM组合生成惰轮场;然后通过电磁感应的透明度存储惰轮)。第2部分来自在检索过程中生成的新FWM过程(检索到的探针场,耦合场和泵浦场组合在一起以生成新的FWM信号)。如果泵浦脉冲存在单光子失谐,则回收的惰轮主要来自第2部分。当施加均匀的外部磁场时,回收的两个磁场在相同的振荡周期内表现出阻尼振荡,这是由拉莫尔自旋引起的进动。我们还通过实验实现了使用FWM来存储和检索光图像,其中将图像添加到了输入信号中。存储之后,检索到的惰轮光束和输入信号会携带相同的图像。这种图像存储技术有望在图像处理,遥感和量子通信中得到应用。

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