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The theory of single photon scattering by a three-level atom in a dissipative coupled cavity array

机译:耗散耦合腔阵列中三能级原子的单光子散射理论

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摘要

A microscopic model is developed in order to analyse the effects of dissipations on single-photon transport in a coupled cavity array where one of the cavities is coupled to a three-level atom and both cavities and the three-level atom are coupled to an external environment. By employing the quasi-boson approach, the single-photon transmission and reflection amplitudes are found exactly for the Ξ-type, V-type and Λ-type three-level atoms. We focus on the dissipation properties in the case of the Λ-type system. Comparing the dissipative case with the nodissipative one, it can be found that the dissipations of the cavities and the Λ-type three-level atom significantly affect the transmission amplitude of single-photon transport. Whether the atom is in tune with the resonant frequency of the cavity or not, incomplete reflection is mostly caused by atom dissipation near the middle dip of the single-photon transport spectrum, while reduced transmission appears to be mainly controlled by cavity dissipation. Dissipations broaden the line width of the single photon transport spectrum.
机译:为了分析耗散对耦合腔阵列中单光子传输的影响,开发了一个微观模型,其中一个腔耦合到三能级原子,而两个腔和三能级原子都耦合到一个外部原子。环境。通过采用拟玻色子方法,可以精确地找到Ξ型,V型和Λ型三能级原子的单光子透射和反射幅度。我们关注于Λ型系统的耗散特性。将耗散情况与无耗散情况进行比较,可以发现腔和Λ型三能级原子的耗散会显着影响单光子传输的传输幅度。无论原子是否与谐振腔的共振频率一致,反射不完全主要是由单光子传输谱中凹附近的原子耗散引起的,而透射率的降低似乎主要由空穴耗散控制。耗散加宽了单光子传输光谱的线宽。

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  • 来源
    《The European Physical Journal D》 |2013年第8期|1-8|共8页
  • 作者单位

    Institute of Theoretical Physics Lanzhou University">(1);

    Institute of Theoretical Physics Lanzhou University">(1);

    Key Laboratory for Magnetism and Magnetic materials of the Ministry of Education Lanzhou University">(2);

    Institute of Theoretical Physics Lanzhou University">(1);

    Institute of Theoretical Physics Lanzhou University">(1);

    Institute of Theoretical Physics Lanzhou University">(1);

    Institute of Theoretical Physics Lanzhou University">(1);

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Quantum Optics;

    机译:量子光学;

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