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首页> 外文期刊>The European physical journal, D. Atomic, molecular, and optical physics >Enhanced narrow spectral line and double electromagnetically induced two-photon transparency induced by double dark resonances
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Enhanced narrow spectral line and double electromagnetically induced two-photon transparency induced by double dark resonances

机译:双重暗共振增强的窄光谱线和双电磁感应的双光子透明度

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摘要

We theoretically investigate the features of two-photon absorption in a five-level atomic system with interacting dark resonances. It is found that two-photon absorption can be completely suppressed at two different frequencies due to the application of two coherent coupling fields and the atomic system exhibits double electromagnetically induced transparency windows against two-photon absorption. The position and width of the double two-photon transparency windows can be controlled via properly adjusting the frequency detuning and the intensities of the two coupling fields. In addition, one enhanced narrow central line can be observed in the two-photon absorption spectra, which may find applications in high-precision spectroscopy. Form a physical point of view, we explicitly explain these results in terms of quantum interference induced by three different two-photon excitation channels in the dressed-state picture.
机译:我们从理论上研究了具有相互作用的暗共振的五能级原子系统中的两个光子吸收的特征。已经发现,由于两个相干耦合场的施加,在两个不同的频率下可以完全抑制双光子吸收,并且原子系统展现出双电磁感应的透明窗口,以对抗双光子吸收。可以通过适当调整频率失谐和两个耦合场的强度来控制两个双光子透明窗口的位置和宽度。此外,可以在双光子吸收光谱中观察到一条增强的窄中心线,这可能会在高精度光谱中找到应用。从物理的角度来看,我们用穿戴状态图片中三个不同的双光子激发通道引起的量子干扰来明确解释这些结果。

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