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Pressure-induced enhancement of two-dimensionality in LaO1−xFxBi(Se/S)2 superconductors

V. Svitlyk, A. Krzton-Maziopa, M. Mezouar

DOI 10.1103/PhysRevB.100.144107 · Physical Review B

T1

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Abstract

Application of high pressure (HP) induces evolution from metallic to semimetallic state in the layered superconducting LaO1−xFxBiSe2 phase, as concluded from ab initio calculations based on experimental P-dependent structural data. These changes in conduction properties are associated with a reported decrease in the superconducting transition temperature, Tc. However, further increase in pressure induces structural transformation in LaO1−xFxBiSe2, which results in a strong enhancement of its two-dimensionality with a related improvement in superconducting performance. In addition, the HP structural anisotropy induces a loss of long-range order correlations along the stacking direction of the LaO/F and BiSe2 layers yielding formation of stacking faults. A similar but even more pronounced structural transition was observed in the related LaO1−xFxBiS2 phase which is also accompanied by an increase in Tc. This demonstrates that enhancement of two-dimensionality in layered superconducting systems acts in favor of their superconducting performance.

Source-reported materials — not catalogue approval

FormulaReported Tc (K)Pressure (GPa)Type
LaO0.76F0.24BiSe2

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2.6Pressure unresolvedunknown
LaO0.68F0.32BiS2

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3Pressure unresolvedunknown
LaO0.5F0.5BiSe2

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3Pressure not reportedunknown
LaO0.5F0.5BiSe2

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6Pressure not reportedunknown
LaO0.5F0.5BiS2

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—Pressure not reportedunknown

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