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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Spectroscopy of atomic rubidium at 500-bar buffer gas pressure: Approaching the thermal equilibrium of dressed atom-light states
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Spectroscopy of atomic rubidium at 500-bar buffer gas pressure: Approaching the thermal equilibrium of dressed atom-light states

机译:500 bar缓冲气体压力下原子的光谱:接近整齐的原子-光态的热平衡

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摘要

We have recorded fluorescence spectra of the atomic rubidium D-lines in the presence of several hundreds of bars of buffer gas pressure. The large collisional broadening of this system interpolates between usual atomic physics gas phase and solid-liquid phase conditions. In our buffer gas cell, with additional saturation broadening, a spectral linewidth comparable to the thermal energy of the atoms in the cell is achieved. An observed intensity-dependent blue asymmetry of the spectra is interpreted as evidence for the onset of thermal equilibrium of dressed atom-light states.
机译:我们已经记录了在数百巴缓冲气体压力存在下原子rub D线的荧光光谱。该系统的较大碰撞展宽是在通常的原子物理气相和固液相条件之间进行插值的。在我们的缓冲气体电池中,随着饱和度的进一步加宽,可以实现与电池中原子的热能相当的光谱线宽。观察到的光谱的依赖于强度的蓝色不对称性被解释为穿戴的原子-光态开始热平衡的证据。

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