Simulating Asymmetric
Top Impurities in Superfluid
Clusters: A para-Water Dopant in para-Hydrogen
Posted on 2015-12-16 - 22:15
We present the first simulation study of bosonic clusters
doped
with an asymmetric top molecule. The path-integral Monte Carlo method
with the latest methodological advance in treating rigid-body rotation
[Noya, E. G.; Vega, C.; McBride, C. J. Chem. Phys.2011, 134, 054117] is employed to
study a para-water impurity in para-hydrogen clusters with up to 20 para-hydrogen molecules.
The growth pattern of the doped clusters is similar in nature to that
of pure clusters. The para-water molecule appears
to rotate freely in the cluster. The presence of para-water substantially quenches the superfluid response of para-hydrogen with respect to the space-fixed frame.
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Zeng, Tao; Li, Hui; Roy, Pierre-Nicholas (2015). Simulating Asymmetric
Top Impurities in Superfluid
Clusters: A para-Water Dopant in para-Hydrogen. ACS Publications. Collection. https://doi.org/10.1021/jz3017705