Please use this identifier to cite or link to this item: http://hdl.handle.net/2445/118853
Title: Mass effects in the photodissociation of homonuclear diatomic molecules in helium nanodroplets: inelastic collision and viscous flow energy exchange regimes
Author: Vilà Casanovas, Arnau
González Pérez, Miguel
Keywords: Heli líquid
Líquids quàntics
Dissociació (Química)
Liquid helium
Quantum liquids
Dissociation
Issue Date: 5-Oct-2016
Publisher: Royal Society of Chemistry
Abstract: The influence of the mass in the photodissociation dynamics of a homonuclear diatomic molecule (X2), embedded in a superfluid helium nanodroplet (T = 0.37 K) of 300 atoms, has been investigated using a hybrid quantum dynamics method recently proposed by us. Several hypothetical isotopic variants of Cl2 have been examined in order to make possible the analysis of a wide diversity of masses (mX: 0.25mCl-1.50mCl). This is probably the first time that this problem has been considered theoretically. The photodissociation mechanism of X2(B) is very similar to that of Cl2(B) and the efficiency of the X2-helium energy exchange mechanism can be so great that it leads to the full and partial (≈86%) geminate recombination for the lower masses explored (mX = 0.25mCl and 0.50mCl, respectively). From the energy exchange perspective two dynamic regimes have been identified. The first regime occurs at the initial times of the photodissociation and corresponds to a perfectly inelastic collision (IC) between the atomic fragments (X) and some helium atoms of the solvation shell. The second regime occurs when the atomic fragments are moving through the nanodroplet, which behaves as a viscous fluid (VF). The ICVF mechanism has probably general character in the photodissociation of molecules embedded in superfluid helium nanodroplets.
Note: Reproducció del document publicat a: https://doi.org/10.1039/c6cp04315a
It is part of: Physical Chemistry Chemical Physics, 2016, vol. 18, p. 27630-27638
URI: http://hdl.handle.net/2445/118853
Related resource: https://doi.org/10.1039/c6cp04315a
ISSN: 1463-9076
Appears in Collections:Articles publicats en revistes (Ciència dels Materials i Química Física)

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