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Precursor diamagnetism above the superconducting transition in La1.9Sr0.1CuO4

A. Lascialfari, A. Rigamonti, L. Romano’, A. A. Varlamov, I. Zucca

DOI 10.1103/PhysRevB.68.100505 · Physical Review B

T1

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Abstract

High-resolution isothermal magnetization curves above the transition temperature Tc in a single crystal of superconducting underdoped cuprate La1.9Sr0.1CuO4 (Tc=26K) are reported. For magnetic field H>~1kOe the diamagnetic magnetization is rather well described by the Ginzburg-Landau theory in finite fields, as observed in previous works. On the contrary, in the low-field range and for T within Tc+2K, evidence is given for precursor diamagnetism of different character, with magnetization curves displaying an upturn in the field dependence and magnetic-history dependent effects below T≃27K. These findings are the magnetic counterpart of the observation by scanning superconducting quantum interference device microscopy of regions precursor of bulk superconductivity. The interpretation of the experimental data in terms of phase fluctuations of local order parameter is shown to account for most of the aspects of the precursor diamagnetism, which appears to be a general phenomenon in cuprates.

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FormulaReported Tc (K)Pressure (GPa)Type
La1.9Sr0.1CuO4

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26Pressure not reportedonset

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