\begin{document}$ \sim $\end{document}4 GHz, which is obviously larger than the unhomogeneous Doppler broadening of \begin{document}$ \sim $\end{document}500 MHz for a macro atomic vapor cell. At the same time, the detuning frequency spectrum of total noise in the two atomic vapor cells is studied. In the macro atomic vapor cell, the total noise intensity strongly relies on the detuning frequency of the laser with respect to the atomic resonance transition. In the micron-scaled vapor cell, due to the strong homogeneous broadening, the center of the detuning frequency spectrum of the total noise is observed to dip. Finally, a simplified physical model is established to compute the broadening of the micron-scaled vapor cell. The homogeneous broadening of atoms is explained experimentally and theoretically in the micron-scaled vapor cell."> - 必威体育下载

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Citation:

Guo Zhi-Chao, Zhang Tong-Yao, Zhang Jing
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  • Abstract views:9118
  • PDF Downloads:136
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Publishing process
  • Received Date:23 October 2019
  • Accepted Date:27 November 2019
  • Published Online:05 February 2020

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