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Spatiotemporal Behaviors of Excited Xenon Atoms in a Three-Dimensional Diagnosable Microplasma Unit Cell with High Sustain Frequency for Plasma Display Panels

机译:在三维诊断的微血管单元电池中具有高维持频率的三维诊断氙原子的时空行为,用于等离子体显示板

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With the high sustain frequency at 250 kHz, a threedimensional diagnostics of excited xenon atoms was investigated by the emission and absorption microscopic spectroscopy for plasma display panels, spatiotemporally. As a typical feature of the emissions, a broad discharge peak was observed on the temporal cathode and a sharp one was monitored on the anode, at the high frequency. However, the discharge starts from the cathode edge, actually, that is a discharge space on the floated address (or data) electrode. Spatially, the dense emission and absorption peak were observed in the discharge space between the sustain electrodes gap. Overall, the microdischarge at high sustain frequency showed priming dominant characteristics.
机译:随着250 kHz的高维持频率,通过用于等离子体显示板的排放和吸收微观光谱来研究激发氙原子的三维诊断,用于等离子体显示板,起动性。作为排放的典型特征,在时间阴极上观察到宽的放电峰,在高频上在阳极上监测尖锐的峰值。然而,放电实际上从阴极边缘开始,即浮动地址(或数据)电极上的放电空间。在空间上,在维持电极间隙之间的放电空间中观察到致密的发射峰。总的来说,高维持频率的微探剂显示出令人生作的主导特性。

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