Two-color ytterbium magneto-optical trap in a compact dual-chamber setup (A8)

Xin Wang, Thilina Muthu-Arachchige, Tangi Legrand, Ludwig Müller, Wolfgang Alt, Sebastian Hofferberth, and Eduardo Uruñuela

Phys. Rev. Applied 23, 014004 (2025)

🔓 arXiv:2408.03310 (2024)

We present an experimental scheme for producing ultracold ytterbium atoms in a compact dual-chamber setup. A dispenser-loaded two-dimensional magneto-optical trap (MOT) using permanent magnets and operating on the broad 1⁢𝑆01⁢𝑃1 singlet transition delivers over 107 atoms per second through a differential pumping stage into a three-dimensional MOT. The two-color three-dimensional MOT uses the broad singlet transition to accumulate  ∼2 ×107 atoms of 174⁢Yb within 2.5 s and subsequently the narrow 1⁢𝑆03⁢𝑃1 intercombination line to cool the atomic cloud to below 10 µK. We report optimized parameters for each stage of the atom collection sequence, achieving high transfer efficiency. We find that shelving into the triplet state during the broad-transition MOT almost doubles the number of trapped atoms.