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Molecular Laser Cooling in a Dynamically Tunable Repulsive Optical Trap

Author(s): Lu, Yukai; Holland, Connor M; Cheuk, Lawrence W

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Abstract: Recent work with laser-cooled molecules in attractive optical traps has shown that the differential ac Stark shifts arising from the trap light itself can become problematic, limiting collisional shielding efficiencies, rotational coherence times, and laser-cooling temperatures. In this Letter, we explore trapping and laser cooling of CaF molecules in a ring-shaped repulsive optical trap. The observed dependences of loss rates on temperature and barrier height show characteristic behavior of repulsive traps and indicate strongly suppressed average ac Stark shifts. Within the trap, we find that Λ-enhanced gray molasses cooling is effective, producing similar minimum temperatures as those obtained in free space. By combining in-trap laser cooling with dynamical reshaping of the trap, we also present a method that allows highly efficientand rapid transfer from molecular magneto-optical traps into conventional attractive optical traps, which has been an outstanding challenge for experiments to date. Notably, our method could allow nearly lossless transfer over millisecond timescales.
Publication Date: 25-May-2022
Electronic Publication Date: 25-May-2022
Citation: Lu, Yukai, Holland, Connor M, Cheuk, Lawrence W. (Molecular Laser Cooling in a Dynamically Tunable Repulsive Optical Trap. Physical Review Letters, 128 (21), 10.1103/physrevlett.128.213201
DOI: doi:10.1103/physrevlett.128.213201
ISSN: 0031-9007
EISSN: 1079-7114
Language: en
Type of Material: Journal Article
Journal/Proceeding Title: Physical Review Letters
Version: Author's manuscript



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