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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Electromagnetically induced transparency and nonlinear pulse propagation in an atomic medium confined in a waveguide
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Electromagnetically induced transparency and nonlinear pulse propagation in an atomic medium confined in a waveguide

机译:电磁感应的透明性和非线性脉冲在受限于波导的原子介质中的传播

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摘要

We study electromagnetically induced transparency (EIT) and nonlinear pulse propagation in a resonant atomic gas confined in a microwaveguide. We find that the quantum-interference effect in this system can be greatly enhanced due to the reduction of the mode volume of the optical field. In particular, compared with atomic gases in free space, the EIT transparency window in the present confined system can be much wider and deeper, the group velocity of the probe field can be much slower, and the Kerr nonlinearity of the system can be much stronger. We show that a more efficient production of ultraslow optical solitons in the present system may be achieved with much slower propagating velocity and lower generation power. Features of EIT and pulse propagation in the present system are very promising for practical applications in optical information processing and transmission.
机译:我们研究了在微波波导中限制的共振原子气体中的电磁感应透明性(EIT)和非线性脉冲传播。我们发现由于减小了光场的模量,该系统中的量子干涉效应可以大大增强。特别是,与自由空间中的原子气体相比,本密闭系统中的EIT透明窗口可以更宽和更深,探测场的群速度可以更慢,并且系统的Kerr非线性可以更强。 。我们表明,在本系统中,超慢速光学孤子的更有效生产可以用低得多的传播速度和较低的发电功率来实现。对于光学信息处理和传输中的实际应用,本系统中的EIT和脉冲传播的特征非常有前途。

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