English

Tackling the challenge of a huge materials science search space with quantum-inspired annealing

Computational Physics 2021-01-13 v1 Materials Science Applied Physics

Abstract

Efficient screening of chemicals is essential for exploring new materials. However, the search space is astronomically large, making calculations with conventional computers infeasible. For example, an NN-component system of organic molecules generates >1060N10^{60N} candidates. Here, a quantum-inspired annealing machine is used to tackle the challenge of the large search space. The prototype system extracts candidate chemicals and their composites with desirable parameters, such as melting temperature and ionic conductivity. The system can be at least 10410^4-10710^7 times faster than conventional approaches. Such exponential acceleration is critical for exploring the enormous search space in virtual screening.

Keywords

Cite

@article{arxiv.2008.03023,
  title  = {Tackling the challenge of a huge materials science search space with quantum-inspired annealing},
  author = {Kan Hatakeyama-Sato and Takahiro Kashikawa and Koichi Kimura and Kenichi Oyaizu},
  journal= {arXiv preprint arXiv:2008.03023},
  year   = {2021}
}