Quantum Zeno-based detection and state engineering of ultracold polar molecules

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Abstract

We present and analyze a toolbox for the controlled manipulation of ultracold polar molecules, consisting of detection of molecules, atom-molecule entanglement, and engineering of dissipative dynamics. Our setup is based on fast chemical reactions between molecules and atoms leading to a quantum Zeno-based collisional blockade in the system. We demonstrate that the experimental parameters for achieving high fidelities can be found using a straightforward numerical optimization. We exemplify our approach for a system composed of NaK molecules and Na atoms and we discuss the consequences of residual imperfections such as a finite strength of the quantum Zeno blockade.

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Jamadagni, A., Ospelkaus, S., Santos, L., & Weimer, H. (2021). Quantum Zeno-based detection and state engineering of ultracold polar molecules. Physical Review Research, 3(3). https://doi.org/10.1103/PhysRevResearch.3.033208

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