arXiv Open Access 2023

Towards practical and massively parallel quantum computing emulation for quantum chemistry

Honghui Shang Yi Fan Li Shen Chu Guo Jie Liu +3 lainnya
Lihat Sumber

Abstrak

Quantum computing is moving beyond its early stage and seeking for commercial applications in chemical and biomedical sciences. In the current noisy intermediate-scale quantum computing era, quantum resource is too scarce to support these explorations. Therefore, it is valuable to emulate quantum computing on classical computers for developing quantum algorithms and validating quantum hardware. However, existing simulators mostly suffer from the memory bottleneck so developing the approaches for large-scale quantum chemistry calculations remains challenging. Here we demonstrate a high-performance and massively parallel variational quantum eigensolver (VQE) simulator based on matrix product states, combined with embedding theory for solving large-scale quantum computing emulation for quantum chemistry on HPC platforms. We apply this method to study the torsional barrier of ethane and the quantification of the protein-ligand interactions. Our largest simulation reaches $1000$ qubits, and a performance of $216.9$ PFLOPS is achieved on a new Sunway supercomputer, which sets the state-of-the-art for quantum computing emulation for quantum chemistry

Topik & Kata Kunci

Penulis (8)

H

Honghui Shang

Y

Yi Fan

L

Li Shen

C

Chu Guo

J

Jie Liu

X

Xiaohui Duan

F

Fang Li

Z

Zhenyu Li

Format Sitasi

Shang, H., Fan, Y., Shen, L., Guo, C., Liu, J., Duan, X. et al. (2023). Towards practical and massively parallel quantum computing emulation for quantum chemistry. https://arxiv.org/abs/2303.03681

Akses Cepat

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Informasi Jurnal
Tahun Terbit
2023
Bahasa
en
Sumber Database
arXiv
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Open Access ✓