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Updated: Jul 18, 2026

Comprehensive Characterization of Extended Defects in Semiconductor Materials by a Scanning Electron Microscope
Published on: May 28, 2016
In situ electron beam induced current measurements of the local thickness in semiconductor devices
A Czerwinski1, M Płuska, J Ratajczak
1Institute of Electron Technology, 02-668 Warsaw, Al. Lotnikow 32/46, Poland. aczerwin@ite.waw.pl
Abstract:
A quantitative electron beam induced current method is shown, applicable in situ for electron beam current measurement on a semiconductor sample without the need for a Faraday cup. As a validation technique, the measurement of top overlayer thickness in the semiconductor structure was chosen for two reasons. First, the measured thickness is easily verified using the same electron microscope in the secondary electron mode by measuring the layer thickness at the layer edges. Second, the measurement of a layer thickness and its local variations constitute an important issue in semiconductor processing and characterization. The proposed method is used in the planar view of the sample, and also for locations far from the layer edges. Quasi-three-dimensional maps of the thickness spatial distribution are presented.
