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Thin film diamond alpha detectors for dosimetry applications

机译:用于剂量学应用的薄膜金刚石α探测器

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摘要

Diamond is a resilient material with rather extreme electronic properties. As such it is an interesting candidate for the fabrication of high performance solid state particle detectors. However, the commercially accessible form of diamond, grownby chemical vapour deposition (CVD) methods, is polycrystalline in nature and often displays rather poor electrical characteristics. This paper considers the way that this material may be used to form alpha particle dosimeters with useful performancelevels. One approach adopted has been to reduce the impurity levels within the feed-stock gases that are used to grow the diamond films. This has enabled significant improvements to be achieved in the mean carrier drift distance within the films leadingalpha detectors with up to 40% collection efficiencies. An alternative approach explored is the use of planar device geometry whereby charge collection is limited to the top surface of the diamond which comprises higher quality material than the bulk ofthe film. This has lead to collection efficiencies of greater than 70%, the highest yet reported for polycrystalline CVD material based detectors. Techniques for improving the characteristics of these devices further are discussed.
机译:钻石是一种具有极高电子性能的弹性材料。因此,它是制造高性能固态粒子检测器的一个有趣的候选者。但是,通过化学气相沉积(CVD)方法生长的商业上可买到的金刚石形式本质上是多晶的,并且通常显示出较差的电特性。本文考虑了这种材料可用于形成具有有用性能水平的α粒子剂量计的方法。所采用的一种方法是减少用于生长金刚石膜的原料气体中的杂质水平。这使得在领先于胶片的alpha检测器中的平均载流子漂移距离达到40%的收集效率时,可以实现重大改进。探索的另一种方法是使用平面装置的几何形状,由此电荷收集被限制在钻石的顶面,该钻石的顶面质量比薄膜的主体要高。这导致收集效率超过70%,这是基于多晶CVD材料的检测器迄今所报道的最高效率。进一步讨论了用于改善这些设备的特性的技术。

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