Photo-ionizing laser-cooled atoms in a MOT generates plasma that eliminates stray electric fields exceeding 10 V/cm, recovering stable coherent Rydberg excitation in a strontium tweezer array.
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Stochastic resetting produces finite pairwise concurrence in the steady state of periodically driven XY and Rydberg spin chains, with a critical rate below which it vanishes and an optimal rate at which it peaks.
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Efficient photo-ionizing elimination of detrimental electric fields for Rydberg atoms
Photo-ionizing laser-cooled atoms in a MOT generates plasma that eliminates stray electric fields exceeding 10 V/cm, recovering stable coherent Rydberg excitation in a strontium tweezer array.
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Generating pairwise entanglement in periodically driven quantum spin chains with stochastic resetting
Stochastic resetting produces finite pairwise concurrence in the steady state of periodically driven XY and Rydberg spin chains, with a critical rate below which it vanishes and an optimal rate at which it peaks.