학술논문

Molecular dynamics simulations of the O2− ion mobility in dense Ne gas at low temperature: Influence of the repulsive part of the ion-neutral interaction potential
Document Type
Periodical
Source
IEEE Transactions on Dielectrics and Electrical Insulation IEEE Trans. Dielect. Electr. Insul. Dielectrics and Electrical Insulation, IEEE Transactions on. 25(5):1992-1998 Oct, 2018
Subject
Fields, Waves and Electromagnetics
Engineered Materials, Dielectrics and Plasmas
Ions
Hydrodynamics
Atomic measurements
Mathematical model
Gases
Temperature measurement
Neon
oxygen negative ions
drift mobility
dense neon gas
molecular dynamics
Language
ISSN
1070-9878
1558-4135
Abstract
New Molecular Dynamics simulations have been carried out in order to get an insight on the physical mechanisms that determine the drift mobility of negative Oxygen ions in very dense Neon gas in the supercritical phase close to the critical point. Two ion-neutral interaction potentials have been used that differ by their repulsive part. We have observed that the potential with a harder repulsive part gives much better agreement with the experimental data. The differences with the softer repulsive potential previously used are discussed. We propose that the behavior of the ion mobility as a function of the gas density is related to the number of neutral atoms loosely bound in the first solvation shell around the ion.