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Unselective ground-state blockade of Rydberg atoms for implementing quantum gates 被引量:1

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摘要 A dynamics regime of Rydberg atoms,unselective ground-state blockade(UGSB),is proposed in the context of Rydberg antiblockade(RAB),where the evolution of two atoms is suppressed when they populate in an identical ground state.UGSB is used to implement a SWAP gate in one step without individual addressing of atoms.Aiming at circumventing common issues in RAB-based gates including atomic decay,Doppler dephasing,and fluctuations in the interatomic coupling strength,we modify the RAB condition to achieve a dynamical SWAP gate whose robustness is much greater than that of the nonadiabatic holonomic one in the conventional RAB regime.In addition,on the basis of the proposed SWAP gates,we further investigate the implementation of a three-atom Fredkin gate by combining Rydberg blockade and RAB.The present work may facilitate to implement the RAB-based gates of strongly coupled atoms in experiment.
出处 《Frontiers of physics》 SCIE CSCD 2022年第2期33-45,共13页 物理学前沿(英文版)
基金 funding from the National Natural Science Foundation of China(NSFC)(Nos.11675046,21973023,and 11804308) the Program for Innovation Research of Science in Harbin Institute of Technology(No.A201412) the Postdoctoral Scientific Research Developmental Fund of Heilongjiang Province(No.LBH-Q15060) the Natural Science Foundation of Henan Province under Grant No.202300410481.
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