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Steady-state fluorescence spectrum of a two-level atom in three-dimensional photonic crystals

机译:三维光子晶体中两能级原子的稳态荧光光谱

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In contrast to the situation in free space where the Markovian approximation and the quantum regression theorem are valid, the atom-photon interaction in photonic bandgap materials is in general nonMarkovian. In the present paper we treat the photonic crystals as background reservoirs and introduce the nonuniform noise operators caused by such nonuniform DOS distributions near the band edge. The steady state fluorescence spectrum of a two-level atom embedded in a three-dimensional photonic bandgap crystal and driven by a monochromatic classical electrical field is calculated theoretically for the first time as we known. With the help of the Liouville operator expansion, we can calculate the stationary two-time correlation functions of the atomic operators as well as the spectral distribution of the resonance fluorescence. We also use various dispersion relations to model this nonuniform DOS distribution near the bandgap. We find that if the atomic energy level is far from the bandgap, fluorescence spectra with Mollow triplets are observed.
机译:与自由空间中的马尔可夫近似和量子回归定理有效的情况相反,光子带隙材料中的原子-光子相互作用通常是非马尔可夫的。在本文中,我们将光子晶体视为背景储层,并介绍了由这种不均匀的DOS分布在频带边缘附近引起的不均匀噪声算子。众所周知,理论上首次计算出了嵌入到三维光子带隙晶体中并由单色经典电场驱动的二级原子的稳态荧光光谱。借助Liouville算子展开式,我们可以计算原子算子的平稳两次相关函数以及共振荧光的光谱分布。我们还使用各种色散关系对带隙附近的这种非均匀DOS分布进行建模。我们发现,如果原子能级远离带隙,则观察到具有三重三重态的荧光光谱。

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