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Single-photon source in strong photon-atom interaction regime in quasiperiodic photonic crystals

机译:准周期光子晶体中强光子与原子相互作用的单光子源

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摘要

The antibunching properties of the fluorescence from a two-level ideal system in a 12-fold quasiperiodic photonic crystal are investigated based on the calculated local density of states. We found that the antibunching phenomenon of the fluorescence from two-level ideal systems could be significantly changed by varying their positions, i.e., perfect antibunching and antibunching with damped Rabi oscillation phenomenon occurred in different positions and at different frequencies in photonic crystals as a result of the large differences in the local density of states. This study revealed that the multi-level coherence of fluorescence from a two-level ideal system could be manipulated by controlling the position of the two-level ideal system in photonic crystals and the emission frequency in the photonic band structure.
机译:基于计算的局部态密度,研究了十二重准周期光子晶体中两级理想系统的荧光的抗聚束性能。我们发现,通过改变两个位置的理想系统的荧光的反聚束现象,可以通过改变它们的位置来显着改变,即,完美的反聚束和具有阻尼拉比振荡现象的反聚束在光子晶体中的不同位置和频率下发生,是由于国家局部密度的巨大差异。这项研究表明,通过控制光子晶体中两能级理想系统的位置和光子能带结构中的发射频率,可以控制来自两能级理想系统的荧光的多能级相干性。

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