Effect of uniaxial strains on the electronic structure of YBa2Cu3O7
Author:
Publisher
Elsevier BV
Subject
Electrical and Electronic Engineering,Energy Engineering and Power Technology,Condensed Matter Physics,Electronic, Optical and Magnetic Materials
Reference42 articles.
1. Generic superconducting phase behavior in high-Tccuprates:Tcvariation with hole concentration inYBa2Cu3O7−δ
2. Point-contact tunneling study ofHgBa2CuO4+δ: BCS-like gap structure
3. Superconductivity at 94 K in HgBa2Cu04+δ
4. Superconductivity above 130 K in the Hg–Ba–Ca–Cu–O system
5. Superconductivity up to 164 K inHgBa2Cam−1CumO2m+2+δ(m=1, 2, and 3) under quasihydrostatic pressures
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1. Modification of structural disorder by hydrostatic pressure in the superconducting cuprate YBa2Cu3O6.73;Physical Review B;2018-05-09
2. Rapid suppression of the charge density wave in YBa2Cu3O6.6 under hydrostatic pressure;Physical Review B;2018-01-16
3. Correlation of structural, magnetic, and electronic transitions of a novel charge-gradientYBa2Cu3O∇xfilm;Physical Review B;2015-04-24
4. An approach for studying the influence of uniaxial strain (pressure) on the temperature of the Bose–Einstein condensation of intersite bipolarons: Possible implementation for cuprates;Physica B: Condensed Matter;2012-07
5. Phase formation and lattice strain in superconducting compoundY1−xLaxBa2Cu3Oy(0<~x<~1);Physical Review B;2003-08-06
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