A copy of this work was available on the public web and has been preserved in the Wayback Machine. The capture dates from 2017; you can also visit the original URL.
The file type is application/pdf
.
Coronene molecules in helium clusters: Quantum and classical studies of energies and configurations
2015
Journal of Chemical Physics
Coronene-doped helium clusters have been studied by means of classical and quantum mechanical (QM) methods using a recently developed He-C 24 H 12 global potential based on the use of optimized atom-bond improved Lennard-Jones functions. Equilibrium energies and geometries at global and local minima for systems with up to 69 He atoms were calculated by means of an evolutive algorithm and a basin-hopping approach and compared with results from path integral Monte Carlo (PIMC) calculations at 2
doi:10.1063/1.4936414
pmid:26671374
fatcat:r4mozdpfrvhvzgl3h44n3ihi3a