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Statistical Coulomb interactions in multi-beam SEM

机译:多梁SEM中的统计库仑相互作用

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Statistical Coulomb interactions in conventional scanning electron microscopy mostly affect the probe size via energy spread and virtual source broadening in the emitter vicinity. However, in a multi-beam probe forming system such as a multi-beam scanning electron microscopes (MBSEM), the trajectory displacement due to interactions in the whole column can give a contribution to the final probe size. For single-beam systems, this can be expressed using approximate formulae for the total trajectory displacement in a beam segment (Jansen’s theory) or by integrating contributions of infinitesimally thin beam slices (the slice method). We build on Jansen’s theory of statistical Coulomb interactions and develop formulae for the trajectory displacement in a multi-beam system. We also develop a more precise semi-analytical result using the slice method. We compare both approaches with a Monte Carlo simulation and show a good agreement with the results of the slice method. Finally, we discuss the implications of our results for the optical design of multi-beam SEM. In a multi-beam with probe size dominated by Coulomb interactions, an increase in the number of beamlets does not necessarily provide an increase of throughput, because the probe size is limited by the total current. Furthermore, we disprove the notion of “the fewer the crossovers?— the less the Coulomb interactions” by showing the quadratic dependence of trajectory displacement on segment length.
机译:常规扫描电子显微镜中的统计库间相互作用主要通过发射极附近的能量扩展和虚拟源展现来影响探针尺寸。然而,在诸如多光束扫描电子显微镜(MBSEM)的多光束探针形成系统中,由于整个列中的相互作用导致的轨迹位移可以给出对最终探针尺寸的贡献。对于单梁系统,可以使用近似公式来表达用于光束段(Jansen理论)的总轨迹位移的近似公式,或者通过整合无限薄光束切片的贡献(切片方法)。我们巩固了Jansen的统计库仑相互作用理论,以及用于多光束系统中的轨迹位移的公式。我们还使用切片方法开发更精确的半分析结果。我们将两种方法与Monte Carlo仿真进行比较,并与切片方法的结果进行了良好的一致性。最后,我们讨论了我们对多梁SEM光学设计的结果的影响。在具有由库仑相互作用主导的探针大小的多光束中,小束数的增加不一定提供吞吐量的增加,因为探头尺寸受到总电流的限制。此外,我们通过表示轨迹位移对段长度的二次依赖性来反驳“越越少的交叉波? - 越少的库仑相互作用”。

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