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首页> 外文期刊>Physical Review, A >Spectral shift and dephasing of electromagnetically induced transparency in an interacting Rydberg gas
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Spectral shift and dephasing of electromagnetically induced transparency in an interacting Rydberg gas

机译:相互作用梁气中电磁诱导的电磁诱导透明度的光谱移位和脱位

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摘要

We perform spectroscopic measurements of electromagnetically induced transparency (EIT) in a strongly interacting Rydberg gas. We observe a significant spectral shift and attenuation of the transparency resonance due to the presence of interactions between Rydberg atoms. We characterize the attenuation as the result of an effective dephasing and show that the shift and the dephasing rate increase versus atomic density, probe Rabi frequency, and principal quantum number of Rydberg states.Moreover, we find that the spectral shift is reduced if the size of a Gaussian atomic cloud is increased and that the dephasing rate increases with the EIT pulse duration at large-parameter regimes. We simulate our experiment with a semianalytical model, which yields results in good agreement with our experimental data.
机译:我们在强烈相互作用的雷德伯格气体中进行电磁诱导透明度(EIT)的光谱测量。 由于存在rydberg原子之间的相互作用,我们观察到显着的光谱变换和透明共振的衰减。 我们的表征是由于有效的去除结果的结果,并表明转变和去除率增加与原子密度,探针Rabi频率和rydberg状态的主要量子数。我们发现如果大小,则发现光谱移位减少 高斯原子云增加,并且脱离率随着大参数制度的EIT脉冲持续时间而增加。 我们模拟了我们的实验,具有半角度模型,它与我们的实验数据吻合良好。

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