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Magnetism and superconductivity in Sr2VFeAsO3 revealed by 75As- and 51V-NMR under elevated pressures

Keiji Ueshima, Fei Han, Xiyu Zhu, Hai-Hu Wen, Shinji Kawasaki, Guo-qing Zheng

DOI 10.1103/PhysRevB.89.184506 · Physical Review B

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Abstract

We report 75As and 51V nuclear magnetic resonance (NMR) measurements on the iron-based superconductor Sr2VFeAsO3 with alternating stacks structure. We find that the 75As nuclear spin-spin relaxation rate (1/T2) shows a pronounced peak at TN = 165 K, below which the resonance peak shifts to a higher frequency due to the onset of an internal magnetic field. The 51V spectrum does not shift, but is broadened below TN. We conclude that the Fe electrons order antiferromagnetically below TN with a magnetic moment mFe ∼ 0.4 μB. Application of external pressure up to 2.4 GPa reduces TN at a rate of −40 K/GPa, and enhances the superconducting transition temperature Tc at a rate of 2 K/GPa. The pressure-temperature phase diagram for Sr2VFeAsO3 shows that superconductivity coexists with antiferromagnetism over a wide pressure range with an unprecedented high Tc up to 36.5 K.

Source-reported materials — not catalogue approval

FormulaReported Tc (K)Pressure (GPa)Type
Sr2VFeAsO3

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32Pressure unresolvedonset
Sr2VFeAsO3

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361.9 GPaonset
Sr2VFeAsO3

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36.52.4 GPaonset
Sr2VFeAsO3

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37Pressure not reportedunknown
Sr2VFeAsO3

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434 GPaunknown
LaFeAsO1-xFx

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26Pressure not reportedunknown

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