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Epitaxial stabilization of an orthorhombic Mg-Ti-O superconductor

Zhuang Ni, Wei Hu, Qinghua Zhang, Yanmin Zhang, Peiyu Xiong, Qian Li, Jie Yuan, Qihong Chen, Beiyi Zhu, Hua Zhang, Xiaoli Dong, Lin Gu, Kui Jin

DOI 10.1103/PhysRevB.105.214511 · Physical Review B

T1

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Abstract

The titanium oxide superconductors exhibit many intriguing phenomena analogous to cuprates and iron pnictides/chalcogenides and thus provide an ideal platform for studying the pairing mechanism of high-temperature superconductors. Here we report the fabrication of superconducting Mg-Ti-O films on MgAl2O4 substrates with three principal orientations by ablating a MgTi2O4 target. Strikingly, a single-crystalline film with an unexpected structure has been found on the (011)-oriented substrate, with a zero resistance transition temperature (Tc0) up to 5.0 K which is the highest among the three principal orientations. Compositional and structural characterizations confirm that the film has a highly reduced Mg/Ti ratio and an orthorhombic Ti9O10-like structure (denoted as Mg: Ti9O10). Such a structure is unstable in bulk but is favorable on the (011)-surface of MgAl2O4 due to the interfacial strain. Similar to other superconducting titanium oxides, the Mg: Ti9O10 film exhibits a relatively large quasi-isotropic upper critical field (Bc2∼13.7 T). The similarity points to a common origin for the superconductivity in the family, providing valuable insights for the mechanism of unconventional superconductivity in transition metal compounds.

Source-reported materials — not catalogue approval

FormulaReported Tc (K)Pressure (GPa)Type
MgTi2O4

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2.6Pressure not reportedzero_resistance
LiTi2O4

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13Pressure not reportedunknown
TiO

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0.5Pressure not reportedunknown

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