paper

Ferromagnetic state with large magnetic moments realized in epitaxially strained Sr3Ru2O7 films

arXiv:2404.00214 · doi:10.1103/PhysRevB.109.L121113

Abstract

Technical advancement of oxide molecular beam epitaxy (MBE) has opened new avenues for studying various quantum transport phenomena in correlated transition-metal oxides, as exemplified by the exotic superconductivity of SrRuO and quantum oscillations of SrRuO. On the other hand, film research of another Ruddlesden-Popper strontium ruthenate SrRuO which exhibits a unique quantum phase related to metamagnetism in bulk systems did not progress well. Here we report the fabrication of high-quality SrRuO thin films by oxide MBE and the observation of a strain-induced ferromagnetic ground state. The change in magnetic exchange coupling evaluated by first-principles calculations indicates a systematic relation between the compression of the -axis length and induced ferromagnetism. Giant epitaxial strain in high-quality films will be a key to a comprehensive understanding of the magnetism in Ruddlesden-Popper strontium ruthenates SrRuO, which sensitively depends on the ratio of in-plane to out-of-plane Ru-Ru distances.

15 pages, 4 figures

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