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Nature|July 12, 2023
Generation of genuine entanglement up to 51 superconducting qubitsSirui Cao, Bujiao Wu, Fusheng Chen, et al.
Science Bulletin|April 21, 2023
Quantum neuronal sensing of quantum many-body states on a 61-qubit programmable superconducting processorMing Gong, He-Liang Huang, Shiyu Wang, et al.
Physical Review Letters|December 10, 2023
Logical Magic State Preparation with Fidelity beyond the Distillation Threshold on a Superconducting Quantum ProcessorYangsen Ye, Tan He, He-Liang Huang, et al.
Science (New York, N.Y.)|November 27, 2025
Programmable higher-order nonequilibrium topological phases on a superconducting quantum processorHaoran Qian, Ming Gong, Jiahui Zhang, et al.
Science (New York, N.Y.)|May 7, 2021
Quantum walks on a programmable two-dimensional 62-qubit superconducting processorMing Gong, Shiyu Wang, Chen Zha, et al.
Physical Review Letters|July 29, 2022
Realization of an Error-Correcting Surface Code with Superconducting QubitsYouwei Zhao, Yangsen Ye, He-Liang Huang, et al.
Physical Review Letters|November 12, 2021
Strong Quantum Computational Advantage Using a Superconducting Quantum ProcessorYulin Wu, Wan-Su Bao, Sirui Cao, et al.
Science Bulletin|December 22, 2022
Quantum computational advantage via 60-qubit 24-cycle random circuit samplingQingling Zhu, Sirui Cao, Fusheng Chen, et al.
Physical Review Letters|January 20, 2026
Experimental Quantum Error Correction below the Surface Code Threshold via All-Microwave Leakage SuppressionTan He, Weiping Lin, Rui Wang, et al.
Physical Review Letters|March 25, 2025
Establishing a New Benchmark in Quantum Computational Advantage with 105-qubit Zuchongzhi 3.0 ProcessorDongxin Gao, Daojin Fan, Chen Zha, et al.
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