New class of T-prime-structure cuprate superconductors
A. Tsukada (1), Y. Krockenberger (1, 2), M. Noda (1, 3), H., Yamamoto (1), D. Manske (2), L. Alff (4), M. Naito (1, 5) ((1) NTT Basic, Research Laboratories, Atsugi, Japan, (2) MPI for Solid State Research,, Stuttgart, Germany, (3) Tokyo University of Science, Yamazaki, Japan

TL;DR
This paper reports the synthesis of a new class of T-prime-structure cuprate superconductors by substituting La with smaller rare earth ions, achieving superconductivity up to 21 K without the need for doping.
Contribution
It introduces a novel method to synthesize undoped La-based T-prime cuprates with high critical temperatures using molecular beam epitaxy.
Findings
Successful synthesis of La2-xRExCuO4 in T-prime-structure.
Observation of superconductivity up to 21 K in these compounds.
Inability to obtain Mott-insulating state before structural transition.
Abstract
High-temperature superconductivity has been discovered in La2-xBaxCuO4 [1], a compound that derives from the undoped La2CuO4 crystallizing in the perovskite T-structure. In this structure oxygen octahedra surround the copper ions. It is common knowledge that charge carriers induced by doping in such an undoped antiferromagnetic Mott-insulator lead to high-temperature superconductivity [2- 4]. The undoped material La2CuO4 is also the basis of the electron-doped cuprate superconductors [5] of the form La2-xCexCuO4+y [6,7] which however crystallize in the so called T-prime-structure, i.e. without apical oxygen above or below the copper ions of the CuO2-plane. It is well known that for La2-xCexCuO4+y the undoped T-prime-structure parent compound cannot be prepared due to the structural phase transition back into the T-structure occuring around x ~ 0.05. Here, we report that if La is…
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