Physical phenomena in a coplanar macroscopic plasma display cell. II. Comparisons between experiments and models
- 22 January 2002
- journal article
- research article
- Published by AIP Publishing in Journal of Applied Physics
- Vol. 91 (3) , 1000-1007
- https://doi.org/10.1063/1.1425426
Abstract
Measurements of infrared and visible emission in a macroscopic discharge cell similar to a plasma display panel (PDP) cell are analyzed using a two-dimensional fluid model of the discharge. The comparisons between experiments and models show a good qualitative agreement but the plasma spreading velocity above the cathode surface is much faster in the experiments. We find that including photoemission (in a simplified way) in the model considerably increases the agreement between experiments and models. With a well-chosen photoemission coefficient, the model reproduces the trends observed in the experiments when the gas mixture (between 2% and 10% of xenon in neon) or the applied voltage is changed. The influence of photoemission on the current rise time and on the velocity of plasma spreading above the dielectric surfaces is more important in the macrocell than in a similar (same dimension × pressure) PDP cell because resonant photon transport does not follow the similarity laws.This publication has 20 references indexed in Scilit:
- Spatiotemporal behaviors of excited Xe atoms in unit discharge cell of ac-type plasma display panel studied by laser spectroscopic microscopyJournal of Applied Physics, 2000
- Resonance radiation transport in plasma display panelsJournal of Applied Physics, 2000
- Radiation trapping of theresonant transitions of xenon and krypton in Xe-Kr, Xe-Ar, and Kr-Ar mixtures: Kinetic analysis and determination of the van der Waals broadening coefficientsPhysical Review A, 2000
- Characterization of micro‐cell discharge in AC‐PDPs by spatio‐temporal optical emission spectroscopyJournal of the Society for Information Display, 2000
- Direct observations of vacuum ultraviolet rays for surface‐discharge ac plasma displays by using an ultra‐high‐speed electronic cameraJournal of the Society for Information Display, 2000
- Spatio-temporal characteristics of infrared and vacuum ultraviolet emission from a surface discharge type AC plasma display panel cell with He-Xe and Ne-Xe gas mixtureIEEE Transactions on Plasma Science, 2000
- Physics and Modeling of Plasma Display PanelsJournal de Physique IV, 1997
- One-dimensional single and multipulse simulations of the ON/OFF voltages and the bistable margin for He, Xe, and He/Xe filled plasma display pixelsIEEE Transactions on Plasma Science, 1996
- Characterization of imprisoned Xe resonant photons in He-Xe and Ne-Xe mixturesJournal of Physics D: Applied Physics, 1995
- State-to-state rate constants for quenching of xenon 6p levels by rare gasesThe Journal of Chemical Physics, 1992