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Rydberg Level Shift due to the Electric Field Generated by Rydberg Atom Collision Induced Ionization in Cesium Atomic Ensemble

机译:Rydberg级别转变由于丽德伯格抗冲击诱导铯原子合奏诱导电离的电场

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摘要

We experimentally studied the Rydberg level shift caused by the electric field, which is generated by Rydberg atom collision induced ionization in a cesium atomic ensemble. The density of charged particles caused by collisions between Rydberg atoms is changed by controlling the ground-state atomic density and optical excitation process. We measured the Rydberg level shift using Rydberg electromagnetically-induced-transparency (EIT) spectroscopy, and interpreted the physical origin using a semi-classical model. The experimental results are in good agreement with the numerical simulation. These energy shifts are important for the self-calibrated sensing of microwave field by the employing of Rydberg EIT. Moreover, in contrast to the resonant excitation case, narrow-linewidth spectroscopy with high signal-to-noise ratio would be useful for high-precision measurements.
机译:我们通过实验研究了由电场引起的Rydberg水平移位,该电场由Rydberg Atom碰撞诱导电离在铯原子合奏中产生。通过控制地 - 状态原子密度和光学激发过程来改变由rydberg原子之间的碰撞引起的带电粒子的密度。我们使用Rydberg电磁诱导的 - 透明度(EIT)光谱测量了Rydberg水平偏移,并使用半古典模型解释了物理来源。实验结果与数值模拟吻合良好。这些能量偏移对于通过采用Rydberg EIT来自我校准的微波场的自我校准感测。此外,与谐振激发壳体相比,具有高信噪比的窄线宽光谱可用于高精度测量。

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