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首页> 外文期刊>Physical Review, A >Single-photon frequency-comb generation in a one-dimensional waveguide coupled to two atomic arrays
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Single-photon frequency-comb generation in a one-dimensional waveguide coupled to two atomic arrays

机译:单维波导中的单光子频率梳状耦合到两个原子阵列

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摘要

An atomic chain coupled to a one-dimensional (1D) photonic waveguide can become a very good atom mirror. This atom mirror can have a very high reflectivity for a single-photon pulse due to the collective interaction between the atoms. Two atom arrays coupled to a 1D waveguide can form a good cavity. When a single-photon pulse is incident from one side of the cavity, only a discrete subset of photon frequencies can transmit the cavity and the transmitted frequencies are almost equally spaced, which is similar to a frequency comb. The linewidth of the comb frequency can be reduced if we increase the atom number in the atomic arrays. More interestingly, if the photon pulse is initially inside the cavity, the photon spectrum after a long time of interaction is also discretized with the comb frequencies being significantly amplified while other frequencies being largely suppressed. This single-photon frequency comb may be useful for precision measurement.
机译:耦合到一维(1D)光子波导的原子链可以成为非常好的原子镜。 由于原子之间的集体相互作用,该原子镜可以具有非常高的单光子脉冲的反射率。 耦合到1D波导的两个原子阵列可以形成良好的腔体。 当单光子脉冲从腔的一侧入射时,只有离散的光子频率子集可以传递腔,并且透射频率几乎同样间隔,这类似于频率梳。 如果我们在原子阵列中增加原子编号,则可以减少梳理频率的线宽。 更有趣的是,如果光子脉冲最初在腔内内,则在长时间交互之后的光子谱也被离散化,并且在很大程度上被抑制的其他频率,梳状频率也被显着放大。 这种单光子频率梳可能可用于精度测量。

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