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Emerging superconductivity hidden beneath charge-transfer insulators.


ABSTRACT: In many of today's most interesting materials, strong interactions prevail upon the magnetic moments, the electrons, and the crystal lattice, forming strong links between these different aspects of the system. Particularly, in two-dimensional cuprates, where copper is either five- or six-fold coordinated, superconductivity is commonly induced by chemical doping which is deemed to be mandatory by destruction of long-range antiferromagnetic order of 3d(9) Cu(2+) moments. Here we show that superconductivity can be induced in Pr2CuO4, where copper is four-fold coordinated. We induced this novel quantum state of Pr2CuO4 by realizing pristine square-planar coordinated copper in the copper-oxygen planes, thus, resulting in critical superconducting temperatures even higher than by chemical doping. Our results demonstrate new degrees of freedom, i.e., coordination of copper, for the manipulation of magnetic and superconducting order parameters in quantum materials.

SUBMITTER: Krockenberger Y 

PROVIDER: S-EPMC3724181 | biostudies-other | 2013

REPOSITORIES: biostudies-other

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Emerging superconductivity hidden beneath charge-transfer insulators.

Krockenberger Yoshiharu Y   Irie Hiroshi H   Matsumoto Osamu O   Yamagami Keitaro K   Mitsuhashi Masaya M   Tsukada Akio A   Naito Michio M   Yamamoto Hideki H  

Scientific reports 20130101


In many of today's most interesting materials, strong interactions prevail upon the magnetic moments, the electrons, and the crystal lattice, forming strong links between these different aspects of the system. Particularly, in two-dimensional cuprates, where copper is either five- or six-fold coordinated, superconductivity is commonly induced by chemical doping which is deemed to be mandatory by destruction of long-range antiferromagnetic order of 3d(9) Cu(2+) moments. Here we show that supercon  ...[more]

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