Thin, uniform arsenic targets suitable for high-fidelity cross section measurements in stacked-target experiments were prepared by electrodeposition of arsenic on titanium backings from aqueous solutions. Electrolytic cells were constructed and capable of arsenic deposits ranging in mass from approximately 1\unicodex201329 mg (0.32\unicodex20137.2 mg/cm2, 0.57\unicodex201313 μm). Examination of electrodeposit surface morphology by scanning electron microscopy and microanalysis was performed to investigate the uniformity of produced targets. Brief studies of plating growth dynamics and structural properties through cyclic voltammetry were also undertaken. Alternative target fabrication approaches by vapor deposition and electrodeposition from a deep eutectic solvent were additionally conducted. We further introduce a non-destructive characterization method for thin targets by neutron activation, which is independent of neutron flux shape, environmental factors, and source geometry, while correcting for any potential scatter or absorption effects.
@article{arxiv.2106.05524,
title = {Preparation and Characterization of Thin Arsenic Targets for Stacked-Target Experiments},
author = {Andrew S. Voyles and Morgan B. Fox and Jonathan T. Morrell and Michael P. Zach and Evan K. Still and Lee A. Bernstein and Wesley D. Frey and Burton J. Mehciz},
journal= {arXiv preprint arXiv:2106.05524},
year = {2024}
}
Comments
15 pages (+4 for references/acknowledgments), 11 figures, preprint prepared for NIM-B