Monte Carlo modeling of a CaF DC MOT identifies capture-velocity improvements and an intrinsic loss mechanism, enabling an experimental trap with 1.5 million molecules (8x prior results).
Yuet al., A conveyor-belt magneto-optical trap of caf, arXiv preprint arXiv:2409.15262 (2024), arXiv:2409.15262
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Numerical simulations demonstrate a viable scheme for slowing, capturing, and sub-Doppler cooling tin atoms in a MOT using an accessible Type-II transition.
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Enhanced Loading of a Molecular Magneto-Optical Trap
Monte Carlo modeling of a CaF DC MOT identifies capture-velocity improvements and an intrinsic loss mechanism, enabling an experimental trap with 1.5 million molecules (8x prior results).
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Simulated Laser Cooling and Magneto-Optical Trapping of Group IV Atoms
Numerical simulations demonstrate a viable scheme for slowing, capturing, and sub-Doppler cooling tin atoms in a MOT using an accessible Type-II transition.