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Source brightness and useful beam current of carbon nanotubes and other very small emitters

机译:碳纳米管和其他非常小的发射器的光源亮度和有用的束流

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摘要

The potential application of carbon nanotubes as electron sources in electron microscopes is analyzed. The resolution and probe current that can be obtained from a carbon nanotube emitter in a low-voltage scanning electron microscope are calculated and compared to the state of the art using Schottky electron sources. Many analytical equations for probe-size versus probe-current relations in different parameter regimes are obtained. It is shown that for most carbon nanotube emitters, the gun lens aberrations are larger than the emitters’ virtual source size and thus restrict the microscope’s performance. The result is that the advantages of the higher brightness of nanotube emitters are limited unless the angular emission current is increased over present day values or the gun lens aberrations are decreased. For some nanotubes with a closed cap, it is known that the emitted electron beam is coherent over the full emission cone. We argue that for such emitters the parameter “brightness” becomes meaningless. The influence of phase variations in the electron wave front emitted from such a nanotube emitter on the focusing of the electron beam is analyzed.
机译:分析了碳纳米管作为电子源在电子显微镜中的潜在应用。计算了可以从低压扫描电子显微镜中的碳纳米管发射器获得的分辨率和探针电流,并使用肖特基电子源将其与现有技术进行了比较。获得了许多在不同参数范围内的探头尺寸与探头电流关系的解析方程。研究表明,对于大多数碳纳米管发射器而言,枪镜像差大于发射器的虚拟光源尺寸,因此会限制显微镜的性能。结果是,除非在当前值上增加角发射电流或减小枪透镜像差,否则限制纳米管发射器的较高亮度的优点。对于某些具有封闭盖的纳米管,已知发射的电子束在整个发射锥上是相干的。我们认为,对于这种发射器,“亮度”参数变得毫无意义。分析了从这种纳米管发射器发射的电子波前的相位变化对电子束聚焦的影响。

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