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Probe spectrum of a four-level atom in a double-band photonic crystal

机译:双带光子晶体中四能级原子的探测光谱

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In this paper, the probe absorption spectrum of an atom in a double-band photonic crystal have been studied. In the modes, we assume that one of the two atomic transitions in a A-type atomic system is interacting with free vacuum modes, and another transition is interacting with free vacuum modes, isotropic photonic band gap (PBG) modes and anisotropic PBG modes, separately. The effects of the fine structure of the atomic lower levels on the probe absorption spectrum are investigated in detail in the three cases. The most interesting thing is that the two (four) transparencies at one (two) probe absorption peak(s), caused by the fine structure of the lower levels of an atom, are predicted in the case of isotropic PBG modes.
机译:本文研究了双带光子晶体中原子的探针吸收光谱。在这些模式中,我们假设A型原子系统中的两个原子跃迁之一与自由真空模态相互作用,而另一个跃迁与自由真空模态,各向同性光子带隙(PBG)模式和各向异性PBG模式相互作用,分别。在这三种情况下,详细研究了原子较低能级的精细结构对探针吸收光谱的影响。最有趣的是,在各向同性PBG模式的情况下,可以预测一个(两个)探针吸收峰处的两个(四个)透明性,这是由于原子较低原子级的精细结构引起的。

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