尹志
(2026-03-31 23:30):
#paper, Quantum-HPC hybrid computation of biomolecular excited-state energies, DOI: 10.48550/arXiv.2601.15677.
通过ONIOM框架,结合TE-QSCI算法,在离子阱方案上实现了视网膜醛的光异构化的S0、S1以及T0的能量计算。非常好的量子+HPC混合计算的例子。
arXiv,
2026-01-22T05:57:54Z.
DOI: 10.48550/arXiv.2601.15677
Quantum-HPC hybrid computation of biomolecular excited-state energies
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Abstract:
We develop a workflow within the ONIOM framework and demonstrate it on the hybrid computing system consisting of the supercomputer Fugaku and the Quantinuum Reimei trapped-ion quantum computer. This hybrid platform extends the layered approach for biomolecular chemical reactions to accurately treat the active site, such as a protein, and the large and often weakly correlated molecular environment. Our result marks a significant milestone in enabling scalable and accurate simulation of complex biomolecular reactions
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