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Calculations Of Damage To Rotating Targets Under Intense Beams For Super-Heavy Element Production

机译:超重型元素生产强度梁下旋转目标损坏的计算

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In the production of the heaviest elements, the cross-sections for evaporation residues are very small, which, in turn, requires the usage of intense beams. Hence, the targets used tend to exhibit shortened lifetimes as beam currents are raised. Tightly focused beams on stationary targets of modest melting point and/or high sputtering yield material will eventually melt or destroy the target. Defocused or "wobbled" beams enhance target survival only to a modest degree. Rotating the target on a wheel can overcome target melting, and using, in addition, a low sputtering rate material as a covering layer can address this issue and allow for higher beam currents to be used for experiments. The purpose of the calculations done for this work is to attempt to predict the safe range of beam currents allowable, i.e. currents which produce heat loads below the melting point of the target. Materials with favorable sputtering rates and thermal properties are also examined. Calculations of the heating and sputtering these targets can withstand will show the safe limits to which they may be exposed and still survive.
机译:在最重的元素的生产中,蒸发残留物的横截面非常小,又需要使用强烈的梁。因此,随着梁电流升高,所用的目标倾向于表现出缩短的寿命。在适度熔点和/或高溅射产量材料的固定目标上紧密聚焦光束最终将熔化或破坏目标。离焦或“摆动”光束仅增强目标存活率,仅在适度程度上。旋转靶在轮上可以克服目标熔化,并且使用,作为覆盖层的低溅射速率材料可以解决该问题并且允许更高光束电流用于实验。为此作品完成的计算目的是尝试预测允许的光束电流的安全范围,即产生低于目标熔点的热负荷的电流。还检查了具有良好溅射速率和热性质的材料。加热和溅射的计算这些靶标的可以承受能力展示它们可能暴露并仍然存活的安全限制。

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