Toward Probing Surface Magnetism with Highly Charged Ions
Abstract
:1. Introduction and Scientific Context
2. Setup and Installation
2.1. Ion Source and Beamline
2.2. Sample Preparation and Interaction Chamber
2.3. X-ray Detector Characterization
3. Preliminary Results with a Si Target
3.1. Determination of the Incident Angles Using X-ray Yield
3.2. X-ray Spectra Dependency on the Incidence Angle
4. Conclusions
Author Contributions
Funding
Data Availability Statement
Conflicts of Interest
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Dergham, P.; Aumayr, F.; Lamour, E.; Macé, S.; Prigent, C.; Steydli, S.; Vernhet, D.; Werl, M.; Wilhelm, R.A.; Trassinelli, M. Toward Probing Surface Magnetism with Highly Charged Ions. Atoms 2022, 10, 151. https://doi.org/10.3390/atoms10040151
Dergham P, Aumayr F, Lamour E, Macé S, Prigent C, Steydli S, Vernhet D, Werl M, Wilhelm RA, Trassinelli M. Toward Probing Surface Magnetism with Highly Charged Ions. Atoms. 2022; 10(4):151. https://doi.org/10.3390/atoms10040151
Chicago/Turabian StyleDergham, Perla, Friedrich Aumayr, Emily Lamour, Stéphane Macé, Christophe Prigent, Sébastien Steydli, Dominique Vernhet, Matthias Werl, Richard Arthur Wilhelm, and Martino Trassinelli. 2022. "Toward Probing Surface Magnetism with Highly Charged Ions" Atoms 10, no. 4: 151. https://doi.org/10.3390/atoms10040151
APA StyleDergham, P., Aumayr, F., Lamour, E., Macé, S., Prigent, C., Steydli, S., Vernhet, D., Werl, M., Wilhelm, R. A., & Trassinelli, M. (2022). Toward Probing Surface Magnetism with Highly Charged Ions. Atoms, 10(4), 151. https://doi.org/10.3390/atoms10040151