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利用具有平坦光谱响应的X射线二极管诊断钨丝阵Z箍缩的X射线功率和能量。

Diagnosing x-ray power and energy of tungsten wire array z-pinch with a flat spectral response x-ray diode.

作者信息

Wang Kun-lun, Ren Xiao-dong, Huang Xian-bin, Zhang Si-qun, Zhou Shao-tong, Dan Jia-kun, Li Jing, Xu Qiang, Ouyang Kai, Cai Hong-chun, Wei Bing, Ji Ce, Feng Shu-ping, Wang Meng, Xie Wei-ping, Deng Jian-jun

机构信息

Key Laboratory of Pulsed Power Technology, IFP, CAEP, Mianyang 621900, China.

出版信息

Rev Sci Instrum. 2015 Nov;86(11):113508. doi: 10.1063/1.4934863.

Abstract

Fast z-pinch is a very efficient way of converting electromagnetic energy to radiation. With an 8-10 MA current on primary test stand facility, about 1 MJ electromagnetic energy is delivered to vacuum chamber, which heats z-pinch plasma to radiate soft x-ray. To develop a pulsed high power x-ray source, we studied the applicability of diagnosing x-ray power from tungsten wire array z-pinch with a flat spectral response x-ray diode (FSR-XRD). The detector was originally developed to diagnose radiation of a hohlraum in SG-III prototype laser facility. It utilized a gold cathode XRD and a specially configured compound gold filter to yield a nearly flat spectral response in photon energy range of 0.1-4 keV. In practice, it was critical to avoid surface contamination of gold cathode. It is illustrated that an exposure of an XRD to multiple shots caused a significant change of response. Thus, in diagnosing x-ray power and energy, we used each XRD in only one shot after calibration. In a shot serial, output of FSR-XRD was compared with output of a nickel bolometer. In these shots, the outputs agreed with each other within their uncertainties which were about 12% for FSR-XRD and about 15% for bolometer. Moreover, the ratios between the FSR-XRD and the bolometer among different shots were explored. In 8 shots, the standard deviation of the ratio was 6%. It is comparable to XRD response change of 7%.

摘要

快速Z箍缩是将电磁能转换为辐射的一种非常有效的方式。在初级试验台装置上施加8 - 10兆安的电流时,约1兆焦的电磁能被输送到真空室,该能量将Z箍缩等离子体加热以辐射软X射线。为了研制一种脉冲高功率X射线源,我们研究了利用具有平坦光谱响应的X射线二极管(FSR-XRD)诊断钨丝阵列Z箍缩X射线功率的适用性。该探测器最初是为诊断神光III原型激光装置中黑体辐射腔的辐射而研制的。它采用了金阴极XRD和特殊配置的复合金滤光片,在0.1 - 4千电子伏特的光子能量范围内产生近乎平坦的光谱响应。在实际应用中,避免金阴极的表面污染至关重要。结果表明,XRD多次曝光会导致响应发生显著变化。因此,在诊断X射线功率和能量时,校准后每个XRD仅在一次测量中使用。在一系列测量中,将FSR-XRD的输出与镍测辐射热计的输出进行了比较。在这些测量中,它们的输出在各自的不确定度范围内相互吻合,FSR-XRD的不确定度约为12%,测辐射热计的约为15%。此外,还探究了不同测量之间FSR-XRD与测辐射热计的比值。在8次测量中,该比值的标准偏差为6%。这与7%的XRD响应变化相当。

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