Correlation between oxygen content δ and metal–insulator transition in Sm1.85Ce0.15CuO4+δ antiferromagnetic superconductors
Author:
Publisher
Elsevier BV
Subject
Electrical and Electronic Engineering,Condensed Matter Physics,Electronic, Optical and Magnetic Materials
Reference9 articles.
1. A superconducting copper oxide compound with electrons as the charge carriers
2. Magnetic and superconducting properties of the electron-doped compounds Ln2−xMxCuO4−y (Ln = Pr, Nd, Sm, Eu, Gd: M = Ce, Th)
3. Upper critical field of aSm1.85Ce0.15CuO4−ysingle crystal: Interaction between superconductivity and antiferromagnetic order in copper oxides
4. Superconductivity and microstructure ofn‐type Ln1.85Ce0.15CuO4−y(Ln=Pr, Sm, Eu) produced under high‐pressure sintering
5. Observation of granular superconductivity in polycrystallineSm2−xCexCuO4−y
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1. Parallel family trees for transfer matrices in the Potts model;Computer Physics Communications;2015-02
2. Identification of two critical charge carrier doping values in high-temperatureY0.8Ca0.2Ba2Cu3OxandSm2−xCexCuO4−ycuprate superconductors;Physical Review B;2010-05-11
3. The Fermi surface and the role of electronic correlations in Sm2−xCexCuO4;Journal of Physics: Condensed Matter;2009-12-02
4. Growth via pulsed laser deposition and characterization of thin films of the electron-doped superconductor Sm2−xCexCuO4−y;Physica C: Superconductivity;2006-09
5. Metal–insulator transition, CuK-edge x-ray absorption near-edge structures and pairing symmetry for electron-doped Pr1.85Ce0.15CuO4+δ superconductors;Journal of Applied Physics;2003-05-15
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