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Results of the Inner Electrode Modification on the ZaP Flow Z-Pinch

机译:ZaP Flow Z-Pinch内电极修饰的结果

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The ZaP Flow Z-Pinch is a basic plasma physics experiment that uses sheared flows to stabilize an otherwise unstable configuration. The inner electrode is replaced with a larger version (15 cm diameter presently versus 10 cm previously). The goal of this modification is to increase temperature through increased adiabatic compression and to allow greater flexibility of neutral-gas injection through a greater number of gas-puff valves. Results are presented regarding the effect of neutral-gas injection characteristics and charge voltage on pinch stability. Increasing capacitor bank voltage and mass of gas injected increases stability and proximity to the machine axis. A four-chord HeNe interferometer is used to determine density at z = 0 cm and total temperature using magnetic field information from the z = 0 azimuthal array of magnetic probes. Total temperatures of 100-150 eV and densities of 2-3 × 10~(22) m~(-3) are calculated; temperatures are consistent with measured electron and ion temperatures.
机译:ZaP Flow Z-Pinch是基本的等离子体物理实验,使用剪切流来稳定原本不稳定的配置。内电极被更大的版本所取代(当前直径为15厘米,以前为10厘米)。该修改的目的是通过增加绝热压缩来提高温度,并允许通过更多个排气阀进行中性气体注入的更大灵活性。给出了有关中性气体注入特性和充电电压对夹点稳定性的影响的结果。电容器组电压的增加和所注入气体的质量的增加,增加了稳定性以及与机器轴的接近度。使用四弦HeNe干涉仪来确定z = 0 cm处的密度和总温度,并使用来自z = 0磁探针方位阵列的磁场信息。计算出总温度为100-150 eV,密度为2-3×10〜(22)m〜(-3);温度与测得的电子和离子温度一致。

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