Presentation 2003/1/20
Relation between the exited atoms density and luminous efficiency of the positive column PDP
Keiji ISHII, Yoshikuni HIRANO, Yasushi MOTOYAMA, Yukio MURAKAMI,
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Abstract(in English) A positive column cell, which radiates the vacuum-ultraviolet light from the positive column region, has high luminous efficiency. To investigate the relation between the exited atoms density and luminous efficiency, we measured the spatial density distribution of excited Xe atoms in the positive column region by laser spectroscopy absorption. Though the density of excited Xe atoms increased according to the increase in discharge current, the positive column region contracted toward the anode side. Next, we investigated the density of excited Xe atoms of the narrowed cell, which varies the cell width from 0.12 to 0.36 mm under the same discharge current. The density of excited Xe atoms increased according to the decrease in cell width. It is clearly that the higher density of exited Xe particles near the wall serves to excite the phosphor of the inner cell wall.
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Keyword(in English) Positive Column PDP / Luminous efficiency / Laser spectroscopy
Paper # EID20002-87
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Committee EID
Conference Date 2003/1/20(1days)
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Language JPN
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) Relation between the exited atoms density and luminous efficiency of the positive column PDP
Sub Title (in English)
Keyword(1) Positive Column PDP
Keyword(2) Luminous efficiency
Keyword(3) Laser spectroscopy
1st Author's Name Keiji ISHII
1st Author's Affiliation NHK ScienceTechnical Research Laboratories Display and Optical Devices()
2nd Author's Name Yoshikuni HIRANO
2nd Author's Affiliation NHK ScienceTechnical Research Laboratories Display and Optical Devices
3rd Author's Name Yasushi MOTOYAMA
3rd Author's Affiliation NHK ScienceTechnical Research Laboratories Display and Optical Devices
4th Author's Name Yukio MURAKAMI
4th Author's Affiliation NHK ScienceTechnical Research Laboratories Display and Optical Devices
Date 2003/1/20
Paper # EID20002-87
Volume (vol) vol.102
Number (no) 600
Page pp.pp.-
#Pages 4
Date of Issue