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Systematics of cross sections for target K-vacancy production in heavy ion collisions.

机译:重离子碰撞中目标K空位产生的截面系统。

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Cross sections for K-shell ionization by heavy ions have been determined from the measurements of target K x-ray yields. The measurements were performed with Ar, Kr, and Xe ions at energies from 2.5 to 25 MeV/amu and self-supported metallic foil targets of Al, Ti, Cu, Zr, Ag, Sm, and Ta. The x-ray yields were measured with a Si(Li) detector, while the projectile ions were counted in coincidence with the x-rays using a plastic scintillation detector. In addition, the amount of secondary K-shell ionization and the degree of simultaneous L-shell ionization in primary K-shell ionizing collisions were assessed by performing high-resolution x-ray measurements on targets of Al, Ti, V, Co, and Cu with a curved crystal spectrometer.; The results of the high resolution measurements revealed that the apparent average L-shell spectator vacancy fraction at the time of Kalpha x-ray emission, pL, may be represented by a universal function of the Geometrical Model's parameter X for Z2 = 17-32.; Multiple-vacancy Kalpha fluorescence yields and corrections for K-shell ionization by secondary processes were determined with the aid of the high resolution spectra for the targets Al, Ti, and Cu. Fluorescence yields for the other targets were determined using an extrapolation procedure.; The resulting K-vacancy production cross sections for 2.5 to 6 MeV/amu projectiles were compared with a limited amount of available experimental data and shown to be in relatively good agreement.; The ECPSSR predictions for all the targets except Al agreed reasonably well with experimental cross sections for Ar projectiles. The experimental cross sections for K-vacancy production in Al, Ti, Cu, Zr, and Ag were greatly deviated from the ECPSSR predictions. The cross sections for Kr on Sm and Ta were in good agreement with theory.; The scaling properties of the Kalpha x-ray production cross sections were examined and a semiempirical "universal" curve was deduced that reproduces the measured cross sections to within +/-30% on average.; The relationship between the Kalpha x-ray production cross sections and the geometrical model's universal variable also was examined.
机译:通过目标K x射线产率的测量,确定了重离子使K壳电离的横截面。使用Ar,Kr和Xe离子以2.5至25 MeV / amu的能量以及Al,Ti,Cu,Zr,Ag,Sm和Ta的自支撑金属箔靶进行测量。用Si(Li)检测器测量X射线产率,而使用塑料闪烁检测器与X射线同时计数弹丸离子。此外,通过对Al,Ti,V,Co和Al的靶标执行高分辨率X射线测量,评估了次K壳电离的量和同时发生的K壳电离碰撞中同时发生的L壳电离的程度。铜用弯曲晶体光谱仪。高分辨率测量的结果表明,在Kalpha X射线发射时,表观平均L壳观众空缺率pL可以由Z2 = 17-32的几何模型参数X的通用函数表示。 ;借助于目标Al,Ti和Cu的高分辨率光谱,确定了多个空位Kalpha荧光的产率以及通过次级过程进行的K壳电离的校正。使用外推法确定其他靶的荧光产率。将得到的2.5至6 MeV / amu弹丸的K空位生产截面与有限的可用实验数据进行比较,并显示出相对较好的一致性。除铝以外的所有目标的ECPSSR预测与Ar弹丸的实验截面相当吻合。在Al,Ti,Cu,Zr和Ag中产生K空位的实验横截面与ECPSSR的预测有很大偏差。 Kr在Sm和Ta上的横截面与理论吻合良好。检查了Kalpha X射线产生截面的定标性质,并推导了半经验的“通用”曲线,该曲线将测量的截面平均再现在+/- 30%以内。还检查了Kalpha X射线产生横截面与几何模型的通用变量之间的关系。

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