Collisional Ionization of Excited State Neon in a Gas Discharge Plasma
Author:
Publisher
Wiley
Subject
Condensed Matter Physics
Reference28 articles.
1. Optogalvanic spectroscopy
2. and , in: Radiative Processes in Discharge Plasmas, edited by and , Plenum (New York 1986) pp. 495–523.
3. Optogalvanic spectroscopy
4. Optogalvanic wavelength calibration in the 555–575 nm region using argon
5. Optogalvanic Detection of Laser-Desorbed Silver in a Low-Pressure Argon Atmosphere
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4. Collisional rate parameters for the 1s4 energy level of neon 638.3 nm and 650.7 nm transitions from the analyses of the time-dependent optogalvanic signals;Journal of Atomic and Molecular Sciences;2010-06
5. Two-photon time-resolved optogalvanic signals of neon;Optics Communications;2009-12
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