Published October 1983 | Version v1
Journal article

Investigation of collisional excitation-transfer processes in a plasma by laser perturbation method

  • 1. Yamanashi Univ., Kofu (Japan). Faculty of Engineering

Description

The theoretical background and the experimental method of the laser perturbation method applied to the study of collisional excitation transfer process in plasma are explained. The atomic density at some specified level can be evaluated theoretically. By using the theoretical results and the experimentally obtained data, the total attenuation probability, the collisional transfer probability and natural emission probability were estimated. For the experiments, continuous wave laser (cw) and pulse laser are employed. It is possible by using pulse dye laser to observe the attenuation curve directly, and to bring in resonance to any atomic spectra. At the beginning, the experimental studies were made on He-Ne discharge. The pulse dye laser has been used for the excitation of alkali atoms. The first application of pulse laser to the study of plasma physics was the study on He. The cross section of disalignment has also been studied by the laser perturbation. The alignment of atoms, step and cascade transfer, the confinement of radiation and optogalvanic effect are discussed in this paper. (Kato, T.)

Additional details

Publishing Information

Journal Title
Oyo Butsuri
Journal Volume
52
Journal Issue
10
Series
Oyo Butsuri.
Journal Page Range
835-842
ISSN
0369-8009

Optional Information

Notes
Contains 79 refs.