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High-Pressure Helium Plasma Produced in the Local Electric Fields of a Piezoelectric Transformer

机译:压电变压器的局部电场中产生的高压氦等离子体

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摘要

A millimeter-scale confined helium plasma was produced at 177 kPa by placing a piezoelectric transformer (PT) in the vicinity of the quartz tube and stimulating the transformer into an electromechanical resonance. The resulting plasma occurred at twice the electromechanical resonance frequency of the transformer. Time-resolved high-speed measurements of luminous emissions and simultaneous measurements of the proximity electric fields near the PT were used to demonstrate a strongly biperiodic behavior. Optical emission spectra, recorded using a synchronized spectrograph, were too weak to elucidate any tendencies toward a biperiodic spectral emission characteristic; however, time-integrated spectra over a broad range of wavelengths demonstrated the characteristic lines of nitrogen. The band of nitrogen emission lines associated with the 377-nm band head was used in conjunction with a spectrum-fitting routine to determine that the ions were essentially cold (rotation temperature on the order of 28 meV).
机译:通过在石英管附近放置一个压电变压器(PT)并激励变压器进入机电共振状态,以177 kPa产生毫米级的受限氦等离子体。产生的等离子体以变压器的机电共振频率的两倍出现。时间分辨的发光发射的高速测量和PT附近的邻近电场的同步测量被用来证明强烈的双周期行为。使用同步光谱仪记录的光发射光谱太弱,无法阐明任何趋向于双周期光谱发射特性的趋势。然而,在很宽的波长范围内的时间积分光谱显示了氮的特征线。与377 nm谱带头相关的氮发射谱带与光谱拟合程序结合使用,以确定离子基本上是冷的(旋转温度约为28 meV)。

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