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A gas injection negative ion source for accelerator mass spectrometry.

机译:用于加速器质谱的注气负离子源。

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摘要

Accelerator mass spectrometry is an ultra-sensitive isotopic analysis technique that allows for the determination of rare long-lived radionuclides such as radiocarbon. Historically, the technique has required that samples be processed into graphite prior to analysis. The processing is time and labor intensive and limits the technique due to contamination. There has been recent interest to develop an ion source that would allow direct injection of gaseous samples, thus eliminating the processing. Previous attempts to build such an ion source have been limited by low mass usage efficiency and severe memory effects. This dissertation describes the development of a plasma negative ion source that allows direct injection of gaseous material. This ion source was able to produce a 12C- ion beam of approximately 4.5 muA from carbon dioxide. This beam intensity is lower than both of the competing designs. However, this ion source was able to operate with a mass efficiency of nearly 0.15% which exceeds one of the competing designs. It was also free from significant memory effects which plagued the other competing design. There are many improvements to the design of this ion source that would further enhance its performance. These results are promising and show that this type of ion source could be used effectively in an accelerator mass spectrometry system.
机译:加速器质谱是一种超灵敏的同位素分析技术,可用于确定稀有的长寿命放射性核素,例如放射性碳。从历史上看,该技术要求在分析之前将样品加工成石墨。该处理是费时费力的,并且由于污染而限制了该技术。最近有兴趣开发一种离子源,该离子源将允许直接注入气态样品,从而消除了处理过程。低质量使用效率和严重的记忆效应限制了以前建立这种离子源的尝试。本文介绍了等离子体负离子源的发展,该离子源允许直接注入气态材料。该离子源能够从二氧化碳产生约4.5μA的12C离子束。该光束强度低于两个竞争设计。但是,该离子源能够以接近0.15%的质量效率运行,超过了竞争设计之一。它也不受困扰其他竞争设计的显着内存影响。该离子源的设计有很多改进,可以进一步提高其性能。这些结果令人鼓舞,表明这种类型的离子源可以有效地用于加速器质谱系统中。

著录项

  • 作者

    Tumey, Scott Joseph.;

  • 作者单位

    University of Maryland, College Park.;

  • 授予单位 University of Maryland, College Park.;
  • 学科 Chemistry Nuclear.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 130 p.
  • 总页数 130
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无机化学;
  • 关键词

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