arXiv · 2302.02106
Losses of thulium atoms from optical dipole traps operating at 532 and 1064 nm
Abstract
Recently thulium has been condensed to Bose-Einstein condensate. Machine learning was used to avoid a detailed study of all obstacles making cooling difficult. This paper analyses the atomic loss mechanism for the 532 nm optical trap, used in the Bose-condensation experiment, and compares it with the alternative and more traditional micron-range optical dipole trap. We also measured the scalar and tensor polarizability of thulium at 1064 nm and was found to be $167\pm 25$ a.u. ($275\pm 41\times {{10}^{-41}}\text{F }\cdot \text{ }{{\text{m}}^{\text{2}}}$) and $-4\pm 1$ a.u. ($7\pm 2\times {{10}^{-41}}\text{F }\cdot \text{ }{{\text{m}}^{\text{2}}}$).
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V. V. Tsyganok, D. A. Pershin, V. A. Khlebnikov, D. A. Kumpilov, I. A. Pyrkh, A. E. Rudnev, E. A. Fedotova, D. V. Gaifudinov, I. S. Cojocaru, K. A. Khoruzhii, P. A. Aksentsev, A. K. Zykova, A. V. Akimov. 2023-02-04. Losses of thulium atoms from optical dipole traps operating at 532 and 1064 nm. https://doi.org/10.1103/physreva.107.023315
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