Published May 2011 | Version v1
Journal article

Solvation of atomic fluorine in bulk superfluid 4He

Creators

  • 1. Department of chemistry and biochemistry, California state university, Northridge (United States)

Description

Bosonic density functional theory calculations were carried out for fluorine atom solvated in superfluid 4He with an emphasis on the formation of dimeric species in the liquid. Atomic fluorine displays a relatively strong binding and anisotropic interaction with helium and hence the resulting solvation structure contains highly localized liquid helium layers. These solvent layers modify the gas phase dimer potentials by inclusion of a recombination barrier, which provides stabilization for the solvated fluorine atoms. At 0 K and saturated vapor pressure, the recombination barrier for the formation of molecular fluorine (2sumg+) in superfluid helium is predicted to be 26.8 K. At temperatures below 1 K, this barrier prevents the F-F recombination as all the other electronic states correlating with the ground state atoms are essentially repulsive. It is concluded that it should be possible to stabilize fluorine atoms in superfluid helium below 1 K temperatures.

Additional details

Publishing Information

Journal Title
Fizika Nizkikh Temperatur
Journal Volume
37
Journal Issue
5
Journal Page Range
p. 491-493
ISSN
0132-6414

Conference

Title
8. International conference on cryocrystals and quantum crystals
Dates
26-31 Jul 2010
Place
Chernogolovka (Russian Federation)