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Experimental realization of a multiqubit quantum memory in a 218-ion chain

Ruixiao Yao, Wentao Lian, Yukai Wu, G. -X. Wang, B.-W. Li, Q.-X. Mei, Ben Qi, Lin Yao, Z.-C. Zhou, Lingfeng He, L.-M. Duan

2022Physical review. A/Physical review, A13 citationsDOI

Abstract

Storage lifetime and capacity are two important factors to characterize the performance of a quantum memory. Here we report the stable trapping of above 200 ions in a cryogenic setup, and demonstrate the combination of the multiqubit capacity and long storage lifetime by measuring the coherence time of randomly chosen ions to be on the order of hundreds of milliseconds. We apply composite microwave pulses to manipulate qubit states globally for efficient characterization of different storage units simultaneously, and we compare the performance of the quantum memory with and without the sympathetic cooling laser, and thus unambiguously show the necessity of sympathetic cooling for the long-time storage of multiple ionic qubits under current experiments.

Topics & Concepts

QubitRealization (probability)Coherence (philosophical gambling strategy)QuantumIonComputer data storageQuantum computerPhysicsMaterials scienceAtomic physicsComputer scienceQuantum mechanicsComputer hardwareStatisticsMathematicsQuantum Information and CryptographyCold Atom Physics and Bose-Einstein CondensatesQuantum optics and atomic interactions
Experimental realization of a multiqubit quantum memory in a 218-ion chain | Litcius