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- W53540360 abstract "We discovered that the immiscibility between La${}_{1.85}$Sr${}_{0.15}$CuO${}_{4}$ and Lu${}_{2}$Cu${}_{2}$O${}_{5}$ leads to a micrometer-scale heterogeneous mixture of a superconducting cuprate and an antiferromagnetic insulator. Whereas electronic conduction of the mixture in the normal state exhibits a percolation behavior, superconducting ${T}_{c}$ systematically increases with increasing amounts of insulating Lu${}_{2}$Cu${}_{2}$O${}_{5}$. The highest onset ${T}_{c}$ of 46 K is achieved near the percolation threshold. Even though an unusual magnetic proximity effect cannot be ruled out, a plausible cause for the ${T}_{c}$ enhancement is the tensile strain in highly anisotropic La${}_{1.85}$Sr${}_{0.15}$CuO${}_{4}$ induced by the differential thermal contraction of the two phases." @default.
- W53540360 created "2016-06-24" @default.
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- W53540360 date "2011-06-21" @default.
- W53540360 modified "2023-09-26" @default.
- W53540360 title "Enhanced superconductingTcin the immiscible system (La1.85Sr0.15CuO4)x(Lu2Cu2O5)1−x" @default.
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- W53540360 doi "https://doi.org/10.1103/physrevb.83.220509" @default.
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