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Abstract
Scanning Electron Microscopy (SEM) experiments provide detailed insights into material microstructures, enabling high-resolution imaging as well as crystallographic analysis through advanced techniques like Electron Backscatter Diffraction (EBSD). However, the interaction of the high-energy electron beam with the material can lead to localized heating, which may significantly impact specimen integrity, especially in applications requiring prolonged beam exposure, for instance when mapping the crystal structure using EBSD. This study examines electron-beam-induced heating effects on a model metal sample (iron), directly measuring the locally deposited electron beam energy with a MEMS-based heating device and validating these measurements through simulations, including Monte Carlo and Finite Element methods. The analysis focuses on the effects of various experimental parameters such as acceleration voltage (from 5 to 30 kV), beam current (from 0.17 nA to 22 nA), dwell time (from 1µs to 1 ms) and sample tilt (0° to 70°). The findings reveal that local sample temperatures can increase by up to 70 °C during EBSD experiments, primarily affected by the choice in beam current and acceleration voltage, with beam current having the most significant impact.
| Original language | English |
|---|---|
| Article number | 114195 |
| Journal | Ultramicroscopy |
| Volume | 276 |
| Number of pages | 6 |
| ISSN | 0304-3991 |
| DOIs | |
| Publication status | Published - 2025 |
Keywords
- Beam induced heating
- EBSD
- MEMS based heating
- SEM
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Dive into the research topics of 'Measurement of electron beam induced sample heating in SEM experiments'. Together they form a unique fingerprint.Activities
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Experimental and simulation insights into unintended electron beam induced heating in SEM experiments
Bastos da Silva Fanta, A. (Guest lecturer), König, C. N. (Guest lecturer) & Jinschek, J. (Guest lecturer)
18 Jun 2026Activity: Talks and presentations › Conference presentations
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