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민승규

Min, Seung Kyu
Theoretical/Computational Chemistry Group for Excited State Phenomena
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PyUNIxMD: A Python-based excited state molecular dynamics package

Author(s)
Lee, In SeongHa, Jong-KwonHan, DaehoKim, Tae InMoon, Sung WookMin, Seung Kyu
Issued Date
2021-09
DOI
10.1002/jcc.26711
URI
https://scholarworks.unist.ac.kr/handle/201301/53309
Fulltext
https://onlinelibrary.wiley.com/doi/10.1002/jcc.26711
Citation
JOURNAL OF COMPUTATIONAL CHEMISTRY, v.42, no.24, pp.1755 - 1766
Abstract
Theoretical/computational description of excited state molecular dynamics is nowadays a crucial tool for understanding light-matter interactions in many materials. Here we present an open-source Python-based nonadiabatic molecular dynamics program package, namely PyUNIxMD, to deal with mixed quantum-classical dynamics for correlated electron-nuclear propagation. The PyUNIxMD provides many interfaces for quantum chemical calculation methods with commercial and noncommercial ab initio and semiempirical quantum chemistry programs. In addition, the PyUNIxMD offers many nonadiabatic molecular dynamics algorithms such as fewest-switch surface hopping and its derivatives as well as decoherence-induced surface hopping based on the exact factorization (DISH-XF) and coupled-trajectory mixed quantum-classical dynamics (CTMQC) for general purposes. Detailed structures and flows of PyUNIxMD are explained for the further implementations by developers. We perform a nonadiabatic molecular dynamics simulation for a molecular motor system as a simple demonstration.
Publisher
WILEY
ISSN
0192-8651
Keyword (Author)
decoherenceexact factorizationmixed quantum-classical dynamicsnonadiabatic molecular dynamics
Keyword
NONADIABATIC COUPLINGSQUANTUMPROGRAMEFFICIENTPHOTOCHEMISTRYSIMULATIONCOHERENCEDESIGN

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