arXiv · 2207.11692
Bose-Einstein Condensation of Europium
Abstract
We report the realization of a Bose-Einstein condensate of europium atoms, which is a strongly dipolar species with unique properties, a highly symmetric $[\mathrm{Xe}]\ 4f^7 6s^2\ {}^8\mathrm{S}_{7/2}$ electronic ground state and a hyperfine structure. By means of evaporative cooling in a crossed optical dipole trap, we produced a condensate of ${}^{151}$Eu containing up to $5\times 10^4$ atoms. The scattering length of ${}^{151}$Eu was estimated to be $a_s = 110(4)\, a_\mathrm{B}$ by comparing the velocities of expansion of condensates with different orientations of the atomic magnetic moments. We observed deformation of the condensate in the vicinity of the Feshbach resonance at $1.32\,\mathrm{G}$ with a width of $10\,\mathrm{mG}$.
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Yuki Miyazawa, Ryotaro Inoue, Hiroki Matsui, Gyohei Nomura, Mikio Kozuma. 2022-09-23. Bose-Einstein Condensation of Europium. https://doi.org/10.1103/physrevlett.129.223401
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