首页> 外文期刊>Japanese Journal of Applied Physics. Part 1, Regular Papers, Brief Communications & Review Papers >Surface Charges in a Coplanar-Electrode Microgap Discharge Measured at Various Gas Pressures Using an Electrooptic Crystal
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Surface Charges in a Coplanar-Electrode Microgap Discharge Measured at Various Gas Pressures Using an Electrooptic Crystal

机译:使用电光晶体在各种气体压力下测量的共面电极微间隙放电中的表面电荷

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The surface voltage and charge on the dielectric barrier in a plasma display panel (PDP)-like microdischarge have been measured using an electrooptic crystal. The initiation of discharge starts the accumulation of surface charges and the charges spread uniformly over the entire region of the electrode surface under the condition of a time resolution of 0.1 μs. For the case of a gas mixture of Ne+Xe (10%), the plasma light emission at the cathode side is much stronger than that at the anode, however, the quantity of surface charges accumulated at both electrodes are the same. The surface charges at various gas pressures are also measured as functions of externally applied voltage and total charge flowing in an external circuit estimated from the discharge current. These characteristics for the microdischarge are compared with the results obtained for macrodischarge. It is found that the voltage difference on the barrier surface between the ground and high-voltage electrodes, caused by the accumulated charges, is an important factor in determining the barrier discharge.
机译:已经使用电光晶体测量了等离子体显示面板(PDP)类微放电中介电势垒上的表面电压和电荷。放电的开始在0.1μs的时间分辨率的条件下开始表面电荷的累积,并且电荷均匀地散布在电极表面的整个区域上。对于Ne + Xe(10%)的混合气体,在阴极侧的等离子体发射比在阳极的等离子体发射强得多,但是,两个电极上累积的表面电荷量是相同的。还测量各种气体压力下的表面电荷,作为外部施加电压和由放电电流估算的,在外部电路中流动的总电荷的函数。将微放电的这些特性与宏观放电的结果进行比较。已经发现,由累积的电荷引起的接地电极与高压电极之间的势垒表面上的电压差是确定势垒放电的重要因素。

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