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20192022
most citedStrong quantum computational advantage using a superconducting quantum processor

1.1k citations · 1.2k across the 3 of their papers we have counts for

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quant-ph202216 cited

Realization of fast all-microwave CZ gates with a tunable coupler

Shaowei Li, Daojin Fan, Ming Gong +29

The development of high-fidelity two-qubit quantum gates is essential for digital quantum computing. Here, we propose and realize an all-microwave parametric Controlled-Z (CZ) gate…

quant-ph202114 cited

Quantum Computational Advantage via 60-Qubit 24-Cycle Random Circuit Sampling

Qingling Zhu, Sirui Cao, Fusheng Chen +50

To ensure a long-term quantum computational advantage, the quantum hardware should be upgraded to withstand the competition of continuously improved classical algorithms and hardwa…

quant-ph20211.1k cited

Strong quantum computational advantage using a superconducting quantum processor

Yulin Wu, Wan-Su Bao, Sirui Cao +51

Scaling up to a large number of qubits with high-precision control is essential in the demonstrations of quantum computational advantage to exponentially outpace the classical hard…

quant-ph2021

Quantum walks on a programmable two-dimensional 62-qubit superconducting processor

Ming Gong, Shiyu Wang, Chen Zha +33

Quantum walks are the quantum mechanical analogue of classical random walks and an extremely powerful tool in quantum simulations, quantum search algorithms, and even for universal…

quant-ph2019

Demonstration of Adiabatic Variational Quantum Computing with a Superconducting Quantum Coprocessor

Ming-Cheng Chen, Ming Gong, Xiao-Si Xu +15

Adiabatic quantum computing enables the preparation of many-body ground states. This is key for applications in chemistry, materials science, and beyond. Realisation poses major ex…