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Abstract Superconductivity is among the most fascinating and well-studied quantum states of matter. Despite over 100 years of research, a detailed understanding of how features of the normal-state electronic structure determine superconducting properties has remained elusive. For instance, the ability to deterministically enhance the superconducting transition temperature by design, rather than by serendipity, has been a long sought-after goal in condensed matter physics and materials science, but achieving this objective may require new tools, techniques and approaches. Here, we report the transmutation of a normal metal into a superconductor through the application of epitaxial strain. We demonstrate that synthesizing RuOmore »Free, publicly-accessible full text available December 1, 2022
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Wang, Z. ; Goodge, B. H. ; Baek, D. J. ; Zachman, M. J. ; Huang, X. ; Bai, X. ; Brooks, C. M. ; Paik, H. ; Mei, A. B. ; Brock, J. D. ; et al ( , Physical Review Materials)