TY - JOUR
T1 - Wavelet transform analysis of ab initio molecular dynamics simulation
T2 - Application to core-excitation dynamics of BF3
AU - Otsuka, Takao
AU - Nakai, Hiromi
PY - 2007/4/30
Y1 - 2007/4/30
N2 - We propose a novel analysis method of ab initio molecular dynamics (AIMD) simulation using a continuous wavelet transform (c-WT) technique. The c-WT technique, one of the time-frequency signal analysis methods, provides a clear view of the dynamical information in time developments. Combined with the auto-correlation function of velocity by AIMD simulation, c-WT analysis enables us to well understand dynamical distribution, such as the vibrational properties following a change of electronic structure in a molecular system. As a practical application, AIMD simulation of core-excited BF3 (B1s → 2a″2) is illustrated. AIMD simulation leads to the change of vibrational motion as well as structural deformation by core-excitation. The c-WT analysis clarifies the relationship between structural deformation and the related significant vibrational modes in core-excitation within 50 fs.
AB - We propose a novel analysis method of ab initio molecular dynamics (AIMD) simulation using a continuous wavelet transform (c-WT) technique. The c-WT technique, one of the time-frequency signal analysis methods, provides a clear view of the dynamical information in time developments. Combined with the auto-correlation function of velocity by AIMD simulation, c-WT analysis enables us to well understand dynamical distribution, such as the vibrational properties following a change of electronic structure in a molecular system. As a practical application, AIMD simulation of core-excited BF3 (B1s → 2a″2) is illustrated. AIMD simulation leads to the change of vibrational motion as well as structural deformation by core-excitation. The c-WT analysis clarifies the relationship between structural deformation and the related significant vibrational modes in core-excitation within 50 fs.
KW - Ab initio molecular dynamics
KW - Continuous wavelet transform
KW - Core-excitation dynamics
KW - Short-time Fourier transform
KW - Time-frequency analysis
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U2 - 10.1002/jcc.20599
DO - 10.1002/jcc.20599
M3 - Article
C2 - 17299740
AN - SCOPUS:33947726675
SN - 0192-8651
VL - 28
SP - 1137
EP - 1144
JO - Journal of Computational Chemistry
JF - Journal of Computational Chemistry
IS - 6
ER -