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Generalized Stability Conditions for an Ultra-Low Energy Electrostatic Charged Particle Storage Ring.

机译:超低能量静电带电粒子存储环的广义稳定性条件。

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摘要

A low energy (~50 eV) electrostatic storage ring has been constructed that can store a recirculating bunch of either electrons or ions. The charged particle bunch 'orbits' within an apparatus consisting of four lenses and two hemispherical deflector analysers, arranged in a 'race-track' configuration of length 64.1 cm.;A theoretical study, using transfer matrices from charged particle optics for a 'symmetric' configuration of lens potentials, has been previously completed by Hammond et al. [New J. Phys. 11 (2009) 043033]. That approach was capable of predicting modes of storage which appeared as a resonant-like pattern. An 'asymmetric' configuration, new in this work and extending the previous study to apply to a more general case, has been completed and will be presented alongside experimental results. The level of agreement between the theoretical and experimental results is found to be excellent, and the robustness of the matrix formalism has eliminated the need to rely on computer simulation to achieve storage. This asymmetric arrangement of the lenses allows for greater flexibility in the operation of the ring, creating the potential for a more diverse range of applications and potentially aid in the design of future rings.;Several spectra for both electrons and positive ions are presented to provide an indication as to how the charged particle bunch evolves as more orbits are completed. The number of counts inevitably decreases as a function of orbit number due to loss mechanisms. Enhanced measurement techniques, as well as the matrix theory, have made storage of the bunch for over a hundred orbits routine, corresponding to over 65 m travelled, and this is observed directly from the spectra.;The application of the storage ring as a multi-pass time-of-flight mass spectrometer has been studied. The isotopes of krypton and xenon have been made to completely separate from one another out of a single pulse of ions. This is observed to occur after ~15 orbits of the ring, roughly 10 m of distance. Initial results have indicated that the mass resolution is approximately 5000. Limitations and potential improvements to the mass resolution are presented.
机译:构造了一个低能量(〜50 eV)的静电存储环,它可以存储一束循环的电子或离子。带电粒子束在由四个透镜和两个半球形偏转器分析仪组成的设备中``轨道''运行,以64.1厘米长的``赛道''配置进行布置;理论研究,使用带电粒子光学器件的传输矩阵实现``对称''晶状体电位的配置先前已由Hammond等人完成。 [New J. Phys。 11(2009)043033]。这种方法能够预测以共振形式出现的存储模式。在这项工作中新出现的“非对称”配置已经完成,并将先前的研究扩展到适用于更一般的情况,并将与实验结果一起呈现。理论和实验结果之间的一致性水平很高,矩阵形式的鲁棒性消除了依靠计算机仿真来实现存储的需要。透镜的这种不对称布置使环的操作具有更大的灵活性,为更广泛的应用范围创造了潜力,并有可能有助于未来环的设计。提出了电子和正离子的几个光谱以提供指示随着更多轨道完成,带电粒子束如何演化。由于丢失机制,计数数量不可避免地根据轨道数而减少。增强的测量技术以及矩阵理论使束流的存储量达到了例行的一百多个轨道,相当于行进了65 m以上,这可以直接从光谱中观察到。通过飞行时间质谱仪已被研究。 k和氙的同位素已经制成从单个离子脉冲中完全彼此分离。观察到这发生在环的大约15圈的轨道上,大约10 m的距离。初步结果表明质量分辨率约为5000。提出了质量分辨率的局限性和潜在的改进方法。

著录项

  • 作者

    Sullivan, Michael.;

  • 作者单位

    University of Windsor (Canada).;

  • 授予单位 University of Windsor (Canada).;
  • 学科 Physics Atomic.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 157 p.
  • 总页数 157
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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