Dynamics of impurity clustering in superfluid He nanodroplets

The capture of multiple impurities by 4 He droplets is investigated using real time dynamics within the density functional approach applied to liquid helium. We study the case of two or six Ar atoms colliding with a 4 He 5000 droplet either in its ground state or hosting a six-vortex array. Dependin...

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Veröffentlicht in:Physical chemistry chemical physics : PCCP 2019-08, Vol.21 (31), p.17423-17432
Hauptverfasser: Coppens, François, Ancilotto, Francesco, Barranco, Manuel, Halberstadt, Nadine, Pi, Martí
Format: Artikel
Sprache:eng
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Zusammenfassung:The capture of multiple impurities by 4 He droplets is investigated using real time dynamics within the density functional approach applied to liquid helium. We study the case of two or six Ar atoms colliding with a 4 He 5000 droplet either in its ground state or hosting a six-vortex array. Depending on initial kinematic conditions, two different Ar structures are found: either a compact, gas-phase like cluster, or a loosely bound metastable cluster with helium density caged inside. In the presence of the vortex array, the argon atoms are deflected by the superfluid flow, tending to orbit around the vortex cores. The Ar atoms end up being trapped together in a loosely bound structure attached to the central vortex core. Snapshot taken at 75 ps of the capture of six Ar atoms hitting a 4 He 5000 droplet at 100 m s −1 .
ISSN:1463-9076
1463-9084
DOI:10.1039/c9cp02789k