\begin{document}$^{164}{\text{Dy}}$\end{document} atoms. We develop a strategy to generate an optimal magnetic field waveform by maximizing the demagnetization rate. Based on this strategy, we investigate the influence of crucial experimental parameters on demagnetization cooling and determine their specific ranges for producing large atom number of BEC, including the optical dipole trap frequency, as well as the intensity and polarization purity of the optical pumping light. The results indicate that demagnetization cooling enables the direct preparation of a large number of dysprosium BEC with sub-second timescales, reducing the cooling time by an order of magnitude compared to conventional methods for dysprosium atoms. Furthermore, it could achieve a cooling effciency of \begin{document}$\chi \approx 44.92$\end{document}, an order of magnitude higher than that of traditional evaporative cooling."> - 必威体育下载

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Citation:

Xie Ke, Luo Ji-Hong, Yao Xing-Can
cstr: 32037.14.aps.73.20241299
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  • Abstract views:1005
  • PDF Downloads:125
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Publishing process
  • Received Date:14 September 2024
  • Accepted Date:30 September 2024
  • Available Online:10 October 2024
  • Published Online:05 November 2024

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