DocumentCode :
901416
Title :
Measurement of excited Xe atoms density in alternating current plasma display panel by means of laser absorption spectroscopy
Author :
Oh, Phil Yong ; Lee, Jun Ho ; Jeong, Se Hoon ; Moon, Han Seb ; Lee, Soo Beom ; Song, Ki Baek ; Jung, Yoon ; Kim, YunKi ; Cho, Gaungsup ; Uhm, Han S. ; Choi, Eun Ha
Author_Institution :
Dept. of Electrophys., Kwangwoon Univ., Seoul, South Korea
Volume :
34
Issue :
2
fYear :
2006
fDate :
4/1/2006 12:00:00 AM
Firstpage :
317
Lastpage :
323
Abstract :
The exited Xe atoms in the 1s5 metastable state and the 1s4 resonance state across the two sustaining electrode have been monitored in a micro-discharge cell of alternating current plasma display panels (PDPs) by laser absorption spectroscopy. In this study, it is found that the maximum excited xenon density is 5.4×1012 cm-3 in the 1s5 metastable state and 1.2×1012 cm-3 in the 1s4 resonance state for the PDP cell with gap distance of 150μm and width of 350μm under the fixed gas pressure of 350 torr and a mixture of Xe content ratio of 10% with Ne under driving frequency of 35 kHz. It is also observed that the exited Xe atom density and the plasma ion density are strongly correlated with one another in this experiment. It is noted that the plasma ion density reaches a minimum at the center of electrode gap and a maximum of 9.0×1011 cm-3 in a region located 200 μm away from this center under the filling pressure of 350 torr, which corresponds to the strongest discharge in alternating current plasma display panel (ac-PDP). When increasing PDP driving frequency from 35 kHz, 50 kHz up to 100 kHz, it is found that density of excited Xe atom in the 1s5 metastable state increase from 6.5×1012 cm-3 up to 1.39×1013 cm-3.
Keywords :
discharges (electric); gas mixtures; metastable states; neon; plasma density; plasma diagnostics; plasma displays; resonant states; xenon; 150 mum; 200 mum; 35 to 100 kHz; 350 mum; 350 torr; Xe-Ne; alternating current plasma display panel; electrode; excited Xe atom density; laser absorption spectroscopy; metastable state; microdischarge cell; plasma ion density; resonance state; Absorption; Atom lasers; Atomic beams; Atomic measurements; Current measurement; Density measurement; Laser excitation; Plasma displays; Plasma measurements; Spectroscopy; Alternating current plasma display panel; excited Xe atom; laser absorption spectroscopy; metastable state; plasma ion density; resonance state;
fLanguage :
English
Journal_Title :
Plasma Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-3813
Type :
jour
DOI :
10.1109/TPS.2006.872446
Filename :
1621308
Link To Document :
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