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arxiv: 1409.2350 · v1 · pith:J4KQTF5Snew · submitted 2014-09-08 · ⚛️ physics.atom-ph · cond-mat.quant-gas

Two-stage magneto-optical trapping and narrow-line cooling of ⁶Li atoms to high phase-space density

classification ⚛️ physics.atom-ph cond-mat.quant-gas
keywords densityphase-spacetransitionatomscoolinghighmagneto-opticaltextrm
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We report an experimental study of peak and phase-space density of a two-stage magneto-optical trap (MOT) of 6-Li atoms, which exploits the narrower $2S_{1/2}\rightarrow 3P_{3/2}$ ultra-violet (UV) transition at 323 nm following trapping and cooling on the more common D2 transition at 671 nm. The UV MOT is loaded from a red MOT and is compressed to give a high phase-space density up to $3\times 10^{-4}$. Temperatures as low as 33 $\mu$K are achieved on the UV transition. We study the density limiting factors and in particular find a value for the light-assisted collisional loss coefficient of $1.3 \pm0.4\times10^{-10}\,\textrm{cm}^3/\textrm{s}$ for low repumping intensity.

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