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Investigations of Azimuthal Uniformity, Radial Extrapolation, and View-Factor Corrections for Yield Measurements of K-Shell X-Ray Sources at the Z Accelerator

机译:Z加速器K壳X射线源屈服测量的方位角均匀性,径向外推和视场校正的研究

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$Z$-pinch experiments at pulsed-power facilities generally field a wide range of diagnostics, designed to make measurements and study the relevant physics during all phases of the $Z$ -pinch. Optical and X-ray images are collected to study ablation, implosion, and the stagnated pinch; yield and power measurements are made at various photon energies; and time-integrated and time-resolved spectroscopies are recorded to infer plasma conditions before, during, and after stagnation. Typically, diagnostics fielded are dispersed azimuthally around the $Z$-pinch and at varying distances relative to the $Z$-pinch. The data are then analyzed and interpreted as a single entity to provide detailed information about a particular process or physics effect. Correlation of the results of the individual diagnostics in this fashion assumes that each diagnostic would measure the same result regardless of its azimuthal or radial location. Assessments of diagnostics to measure K-shell yield at the Z accelerator, which are fielded at varying azimuthal locations and radial distances, are presented. These measurements illustrate that the K-shell emission is azimuthally uniform for titanium, stainless-steel, and copper wire arrays and that the standard correction for radial distance is valid. The importance of view-factor corrections is also discussed.
机译:脉冲电源设施中的$ Z $ -pinch实验通常会进行广泛的诊断,旨在在$ Z $ -pinch的所有阶段进行测量并研究相关物理。收集光学和X射线图像以研究消融,内爆和停滞性捏合;在各种光子能量下进行产量和功率测量;记录时间积分和时间分辨光谱,以推断停滞之前,之中和之后的血浆状况。通常,现场诊断以方位角分散在$ Z $夹点附近,并且相对于$ Z $夹点的距离不同。然后将数据分析并解释为单个实体,以提供有关特定过程或物理效应的详细信息。以这种方式对各个诊断结果的相关性假设,每个诊断将测量相同的结果,而不管其方位角或径向位置如何。提出了在Z加速器上测量K壳屈服的诊断方法的评估,这些评估在不同的方位角位置和径向距离处进行。这些测量结果表明,钛,不锈钢和铜线阵列的K壳发射在方位上是均匀的,并且径向距离的标准校正是有效的。还讨论了视图因子校正的重要性。

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