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Controlled flow of excitations in a ring-shaped network of Rydberg atoms

Francesco Perciavalle, Davide Rossini, Tobias Haug, O. Morsch, Luigi Amico

2023Physical review. A/Physical review, A16 citationsDOI

Abstract

Highly excited Rydberg atoms are a powerful platform for quantum simulation and information processing. Here, we propose atomic ring networks to study chiral currents of Rydberg excitations. The currents are controlled by a phase pattern imprinted via a Raman scheme and can persist even in the presence of dephasing. Depending on the interplay between the Rabi coupling of Rydberg states and the dipole-dipole atom interaction, the current shows markedly different features. The excitations propagate with a velocity displaying a characteristic peak in time, reflecting the chiral nature of the current. We find that the time-averaged current in a quench behaves similarly to the ground-state current. This analysis paves the way for the development of new methods to transport information in atomic networks.

Topics & Concepts

Rydberg formulaDephasingPhysicsExcited stateAtomic physicsRydberg atomDipoleAtom (system on chip)Current (fluid)Quantum mechanicsIonizationComputer scienceIonEmbedded systemThermodynamicsCold Atom Physics and Bose-Einstein CondensatesSpectroscopy and Quantum Chemical StudiesQuantum, superfluid, helium dynamics
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