Abstract
We demonstrate full quantum state control of two species of single atoms using optical tweezers and assemble the atoms into a molecule. Our demonstration includes 3D ground-state cooling of a single atom (Cs) in an optical tweezer, transport by several microns with minimal heating, and merging with a single Na atom. Subsequently, both atoms occupy the simultaneous motional ground state with 61(4)% probability. This realizes a sample of exactly two cotrapped atoms near the phase-space-density limit of one, and allows for efficient stimulated-Raman transfer of a pair of atoms into a molecular bound state of the triplet electronic ground potential a3ς+. The results are key steps toward coherent creation of single ultracold molecules for future exploration of quantum simulation and quantum information processing.
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CITATION STYLE
Liu, L. R., Hood, J. D., Yu, Y., Zhang, J. T., Wang, K., Lin, Y. W., … Ni, K. K. (2019). Molecular Assembly of Ground-State Cooled Single Atoms. Physical Review X, 9(2). https://doi.org/10.1103/PhysRevX.9.021039
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