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等离子体平板背光源单元放电特性的研究

Research on Discharge Characteristics in a Flat Plasma Backlight Cell
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摘要 采用粒子网格-蒙特卡罗碰撞(P IC-M CC)方法对等离子体平板背光源单元的放电过程进行了数值模拟,获得了放电过程中各带电粒子在空间区域的分布以及各区域的形成和性质,并结合模拟结果,详细分析了等离子体平板背光源单元的放电特性。结果表明,放电单元采用大电极间距可获得正柱区放电,正柱区的形成是正离子在阴极鞘层区不断积累将电位抬高所致。通过增加电极间距以增加正柱区的长度,可以有效地改善放电特性,从而提高背光源的发光效率。 The discharge process and the distribution of charged particles in a flat plasma backlight cell are simulated with particle in cell-Monte Carlo collision (PIC-MCC) method. Based on the above information, an analysis of the discharge characteristics is provided. The results show that the long electrode gap leads to the positive column which is caused by the climbing voltage on the cathode surface due to the accumulation of positive ions. It can improved the discharge performance for longer electrode gap and the luminous efficacy is increased. Although the luminance falls under lower sustain voltage, the luminous efficacy is increased.
出处 《光电子技术》 CAS 北大核心 2010年第1期16-21,共6页 Optoelectronic Technology
关键词 粒子网络-蒙特卡罗碰撞 大电极间距 正柱区 发光效率 PIC-MCC long electrode gap positive column region luminous efficacy
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