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Observation of Rydberg blockade due to the charge-dipole interaction between an atom and a polar molecule

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arxiv 2303.06126 v2 pith:PVVETIHT submitted 2023-03-10 physics.atom-ph quant-ph

classification physics.atom-phquant-ph
keywords atominteractionmoleculerydbergblockadecharge-dipoleseparationsingle
verification ladder T0 review T1 audit T2 compute T3 formal

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abstract

We demonstrate Rydberg blockade due to the charge-dipole interaction between a single Rb atom and a single RbCs molecule confined in optical tweezers. The molecule is formed by magnetoassociation of a Rb+Cs atom pair and subsequently transferred to the rovibrational ground state with an efficiency of 91(1)\%. Species-specific tweezers are used to control the separation between the atom and molecule. The charge-dipole interaction causes blockade of the transition to the Rb(52s) Rydberg state, when the atom-molecule separation is set to $310(40)$~nm. The observed excitation dynamics are in good agreement with simulations using calculated interaction potentials. Our results open up the prospect of a hybrid platform where quantum information is transferred between individually trapped molecules using Rydberg atoms.

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