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透射电子显微镜中电子束电流的精确测量。

Precise measurement of the electron beam current in a TEM.

作者信息

Krause Florian F, Schowalter Marco, Oppermann Oliver, Marquardt Dennis, Müller-Caspary Knut, Ritz Robert, Simson Martin, Ryll Henning, Huth Martin, Soltau Heike, Rosenauer Andreas

机构信息

Institut für Festkörperphysik, Universität Bremen, Otto-Hahn-Allee 1, 28359 Bremen, Germany.

Institut für Festkörperphysik, Universität Bremen, Otto-Hahn-Allee 1, 28359 Bremen, Germany.

出版信息

Ultramicroscopy. 2021 Apr;223:113221. doi: 10.1016/j.ultramic.2021.113221. Epub 2021 Feb 3.

Abstract

Modern quantitative TEM methods such as the ζ-factor technique require precise knowledge of the electron beam current. To this end, a macroscopic Faraday cup was designed and constructed. It can replace the viewing screen in the projection chamber of a TEM and guarantees highly accurate measurement of the electron beam with precision only limited by the used amperemeter. The easy to install, affordable device is shown to be highly apt for precision measurement of currents >5pA. The Faraday cup results are used for an assessment and a comparison of various other beam current measurement methods. It is found that the built-in screen amperemeter of the used TEM is quite inaccurate and that measurements using the screen in general tend to underestimate the current. If present, the drift tube of a spectrometer can also be used as a Faraday cup, but certain described peculiarities have to be taken into account. Direct ultrafast electron detection cameras allow precise measurement at very small currents. For the electron counting technique, which exploits single electron detection capabilities of STEM detectors, a systematic current underestimation was observed and investigated. This results in a reformulated routine for the method and with these improvements it is demonstrated to be capable of accurate high-precision measurements for currents <5pA.

摘要

现代定量透射电子显微镜(TEM)方法,如ζ因子技术,需要精确了解电子束电流。为此,设计并制造了一种宏观法拉第杯。它可以取代TEM投影室中的观察屏,并确保对电子束进行高精度测量,其精度仅受所用安培计的限制。这种易于安装、价格实惠的装置被证明非常适合精确测量大于5pA的电流。法拉第杯的测量结果用于评估和比较其他各种束流测量方法。研究发现,所用TEM的内置屏式安培计相当不准确,而且一般来说,使用观察屏进行测量往往会低估电流。如果存在,光谱仪的漂移管也可以用作法拉第杯,但必须考虑某些所述的特殊情况。直接超快电子检测相机能够在非常小的电流下进行精确测量。对于利用扫描透射电子显微镜(STEM)探测器的单电子检测能力的电子计数技术,观察并研究了系统的电流低估现象。这导致了该方法的重新制定程序,通过这些改进,证明它能够对小于5pA的电流进行精确的高精度测量。

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