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Residual activity induced by heavy ions and beam-loss criteria for heavy-ion accelerators

机译:重离子诱导的残留活性和重离子促进剂的束流损失标准

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The paper presents results of FLUKA simulations of the residual activity induced by heavy ions in two target configurations representing: (1) a beam pipe of an accelerator and (2) a bulky accelerator structure like a magnet yoke or a coil. The target materials were stainless steel and copper representing the most common construction materials used for basic accelerator components. For these two materials, the inventory of the induced isotopes depends mainly on the target material and much less on the projectile species. Time evolution of the induced activity can be described by means of a generic curve that is independent from the projectile mass. Dependence of the induced residual activity on selected ion beam parameters was studied. The main goal of the study was establishing a scaling law expanding the existing proton beam-loss tolerance to heavy-ion beams. This scaling law enables specifying beam-loss criteria for projectile species from proton up to uranium at energies from $200ext{ }ext{ }mathrm{MeV}/mathrm{u}$ up to $1ext{ }ext{ }mathrm{GeV}/mathrm{u}$.
机译:本文介绍了FLUKA模拟的重离子在两种目标构型下引起的残余活性的结果,这些构型分别是:(1)加速器的束管和(2)庞大的加速器结构,如磁轭或线圈。目标材料是不锈钢和铜,它们是用于加速器基本部件的最常见建筑材料。对于这两种材料,诱导同位素的存量主要取决于目标材料,而较少取决于弹丸种类。诱导活动的时间演变可以通过独立于弹丸质量的通用曲线来描述。研究了诱导的残留活性对所选离子束参数的依赖性。该研究的主要目的是建立定标定律,将现有的质子束损失容限扩展到重离子束。通过此缩放定律,可以为能量从200美元/文本{} 文本{} mathrm {MeV} / mathrm {u} $到$ 1 text {} text的能量,指定从质子到铀的射弹物种的束流损失准则{} mathrm {GeV} / mathrm {u} $。

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