Injection of photoelectrons into dense argon gas
arXiv:1007.1187 · doi:10.1088/0963-0252/20/3/034001
Abstract
The injection of photoelectrons in a gaseous or liquid sample is a widespread technique to produce a cold plasma in a weakly--ionized system in order to study the transport properties of electrons in a dense gas or liquid. We report here the experimental results of photoelectron injection into dense argon gas at the temperatureT=142.6 K as a function of the externally applied electric field and gas density. We show that the experimental data can be interpreted in terms of the so called Young-Bradbury model only if multiple scattering effects due to the dense environment are taken into account when computing the scattering properties and the energetics of the electrons.
18 pages, 10 figures, figure nr. 10 has been redrawn, to be submitted to Plasma Sources Science and Technology