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Redefining the Quantum Supremacy Baseline With a New Generation Sunway Supercomputer

Quantum Physics 2021-11-23 v2

Abstract

A major milestone in the era of noisy intermediate scale quantum computers is \textit{quantum supremacy} [Nature \textbf{574}, 505 (2019)] claimed on the Sycamore quantum processor of 5353 qubits, which can perform a random circuit sampling task within 200200 seconds while the same task is estimated to require a runtime of 10,00010,000 years on Summit. This record has been renewed with two recent experiments on the Zuchongzhi 2.02.0 (5656 qubits) and Zuchongzhi 2.12.1 (6060 qubits) quantum processors. On the other front of quantum supremacy comparison, there has also been continuous improvements on both the classical simulation algorithm as well as the underlying hardware. And a fair justification of the computational advantages for those quantum supremacy experiments would require to practically simulate the same problems on current top supercomputers, which is still in lack. Here we report the full-scale simulations of these problems on new generation Sunway supercomputer, based on a customized tensor network contraction algorithm. Our benchmark shows that the most challenging sampling task performed on Sycamore can be accomplished within 11 week, thus collapsing the quantum supremacy claim of Sycamore. Additionally, we show that the XEB fidelities of the \textit{quantum supremacy circuits} with up to 1414 cycles can be verified in minutes, which also provides strong consistency check for quantum supremacy experiments. Our results redefine quantum supremacy baseline using the new generation Sunway supercomputer.

Keywords

Cite

@article{arxiv.2111.01066,
  title  = {Redefining the Quantum Supremacy Baseline With a New Generation Sunway Supercomputer},
  author = {Xin Liu and Chu Guo and Yong Liu and Yuling Yang and Jiawei Song and Jie Gao and Zhen Wang and Wenzhao Wu and Dajia Peng and Pengpeng Zhao and Fang Li and He-Liang Huang and Haohuan Fu and Dexun Chen},
  journal= {arXiv preprint arXiv:2111.01066},
  year   = {2021}
}

Comments

6 pages, 3 figures

R2 v1 2026-06-24T07:21:17.513Z