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◆ Scientific Reports2026-01-06· Materials science

Recipe optimization and SRF test of Cu-compatible Nb$${}_{3}$$Sn films by DC magnetron sputtering from a stoichiometric target

D. Fonnesu, D. Ford, E. Chyhyrynets, Sebastian Keckert, Jens Knobloch, Oliver Kugeler, M. Lazzari, Giovanni Marconato, Alessandro Salmaso, Aleksandr Zubtsovskii, C. Pira

原始摘要(英文原文)· Original abstract
The development of modern particle accelerators such as FCC-ee requires improved energy efficiency. On the SRF cavity side, the intermetallic compound [Formula: see text] is a promising alternative to niobium: its higher critical temperature (18.3 K) results into a BCS surface resistance at 4.5 K comparable to the one of Nb at 2 K, potentially allowing improved performance and reduced cryogenic costs while maintaining operation at 4.5 K. However, its brittleness makes bulk machining impractical, restricting its application to thin-film coatings. This study presents [Formula: see text] thin films deposited on copper substrates via DCMS using a single stoichiometric target. The optimization of the deposition parameters via the evaluation of the critical temperature, morphology, elemental composition and crystalline structure of the films is outlined. A niobium buffer layer is implemented to prevent copper-tin interdiffusion, and plays a key role in the film quality. The results demonstrate [Formula: see text] films deposited at ≤ [Formula: see text] on copper substrates pre-coated with a 30 µm niobium buffer layer which exhibit a critical temperature ≥ 17 K. The RF test of a film deposited via the same recipe on a bulk Nb QPR sample yielded an RF surface resistance of 23 nΩ at 4.5 K, 20 mT and 400 MHz. These findings open the way to a scalable approach to high-performance [Formula: see text]/Cu cavities.
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Recipe optimization and SRF test of Cu-compatible Nb$${}_{3}$$Sn films by DC magnetron sputtering from a stoichiometric target — 科研速览 Science Skim