TY - JOUR
T1 - Large-gap AC coplanar plasma display cells
T2 - Macro-cell experiments and 3-D simulations
AU - Ouyang, J.
AU - Callegari, Th
AU - Caillier, B.
AU - Boeuf, J. P.
PY - 2003/6
Y1 - 2003/6
N2 - We present experimental and simulation studies of the plasma in a macroscopic ac plasma display panel discharge cell operating with a large coplanar gap. We find that the xenon excitation efficiency is much larger than that in the conventional, small-gap electrode configuration but with larger sustaining voltage. We discuss the discharge mode and efficiency in such large gap configurations, with the help of time resolved optical diagnostics and simulations.
AB - We present experimental and simulation studies of the plasma in a macroscopic ac plasma display panel discharge cell operating with a large coplanar gap. We find that the xenon excitation efficiency is much larger than that in the conventional, small-gap electrode configuration but with larger sustaining voltage. We discuss the discharge mode and efficiency in such large gap configurations, with the help of time resolved optical diagnostics and simulations.
KW - Dielectric barrier discharges
KW - Discharge simulation
KW - Glow discharge plasma
KW - Plasma display panel (FDP)
KW - Ultraviolet (UV) emission
UR - https://www.scopus.com/pages/publications/0038539429
U2 - 10.1109/TPS.2003.812343
DO - 10.1109/TPS.2003.812343
M3 - Article
AN - SCOPUS:0038539429
SN - 0093-3813
VL - 31
SP - 422
EP - 428
JO - IEEE Transactions on Plasma Science
JF - IEEE Transactions on Plasma Science
IS - 3
ER -