Experimental evidence of quantum Drude oscillator behavior in liquids revealed with probabilistic iterative Boltzmann inversion
Abstract
The first experimental evidence of quantum Drude oscillator behavior in liquids is uncovered using probabilistic machine learning-augmented iterative Boltzmann inversion applied to noble gas radial distribution functions. Furthermore, classical force fields for noble gases are shown to be reduced to a single parameter through simple empirical relations linked to atomic dipole polarizability. These findings highlight how neutron scattering data can inspire innovative force field design and offer insight into interatomic forces to advance molecular simulations.
Article Details
Journal Info
The Journal of Chemical Physics
American Institute of Physics
Authors (4)
B. L. Shanks
Institute of Organic Chemistry and Biochemistry of the Czech Academy of Sciences 1 , Prague,
H. W. Sullivan
Department of Chemical Engineering, University of Utah 2 , Salt Lake City, Utah 84112,
P. Jungwirth
Institute of Organic Chemistry and Biochemistry of the Czech Academy of Sciences 1 , Prague,
M. P. Hoepfner
Department of Chemical Engineering, University of Utah 2 , Salt Lake City, Utah 84112,