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中国物理学会期刊

调控电磁感应透明气体折射率实现可控光子带隙结构

CSTR: 32037.14.aps.56.541

Controlling the photonic bandgap structures via manipulation of refractive index of electromagnetically induced transparency vapor

CSTR: 32037.14.aps.56.541
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  • 提出了电磁感应透明(EIT)介质的一个新的相干操纵应用:控制电磁感应透明气体折射率实现可控光子带隙结构. 将一定密度的EIT原子气体充入以砷化钾为背景的椭圆孔柱中,计算表明该三角晶格排列椭圆柱光子晶体的光子带隙随外控制场而变. 通过调控自发辐射率、无辐射衰变率、控制光Rabi频率、原子数密度等外参数以及椭圆结构几何参数,在高频率区域得到了大小约0.0503ωe(ωe=2πc/a)的完全光子带隙.

     

    A new application of coherent manipulation of EIT (electromagnetically induced transparency) medium is suggested. A two-dimensional photonic cystal with a triangle lattice of elliptic air cylinders, which are filled with the EIT atomic vapor, in the KAs backgroud material is designed. By manipulating the refractive index of the EIT vapor via the external control field, one can obtain the controllable bandgap structure that is sensitive to the variations of external conditions (e.g. the intensity of the control field). It is shown that a large complete bandgap of about 0.0503ωe in the region of high normalized frequency could be achieved by choosing the specific parameters such as the spontaneous decay rate, dephasing rate, Rabi frequency of control light, atomic number density as well as elliptic geometric parameters.

     

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