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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Effect of atomic position on the spontaneous emission of a three-level atom in a coherent photonic-band-gap reservoir
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Effect of atomic position on the spontaneous emission of a three-level atom in a coherent photonic-band-gap reservoir

机译:原子位置对相干光子带隙储层中三能级原子自发发射的影响

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The effect of atomic position on the spontaneous emission and optical spectra of a three-level atom embedded in a photonic crystal was studied by considering the coherent two-band photonic-band-gap (PBG) reservoir. With the definite phase difference between the fields of the air band and dielectric band in this coherent PBG reservoir, we found that this coherent property grows stronger and results in the spectrum shift and the appearance of dark lines and kinks as the width of band gap gets smaller; and the variation of the atomic position leads to large shift of spectral peak. The averaged spectra of the system with an ensemble of atoms embedded in the dielectric region are blueshifted while those of atoms in the air region are redshifted. The spectra peaks can even shift more than 75% of the half width at half maximum. The feasible experimental systems composed of an ensemble of molecules (quantum dots or fluorescence dye) in photonic crystals are discussed.
机译:通过考虑相干的两波段光子带隙(PBG)储层,研究了原子位置对嵌入在光子晶体中的三能级原子的自发发射和光谱的影响。在此相干PBG储层中,空气带和介电带的场之间具有确定的相位差,我们发现,随着带隙宽度的增加,该相干特性变得更强,并导致光谱移动以及出现暗线和扭结较小原子位置的变化导致光谱峰的大位移。该系统的平均光谱在原子区域中嵌入了原子的整体,并发生了蓝移,而在空气区域中的原子的那些则发生了红移。光谱峰甚至可以在一半最大值处移动超过一半宽度的75%。讨论了由光子晶体中的一组分子(量子点或荧光染料)组成的可行实验系统。

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