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Strain-controlled critical temperature in REBa2Cu3Oy-coated conductors

机译:REBa2Cu3Oy涂层导体中的应变控制临界温度

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摘要

Recently, we succeeded in detwinning REBa2Cu3O7 (RE123, RE = rare-earth elements)-coated conductors by annealing under an external uniaxial strain. Using the untwinned RE123 tapes, the uniaxial-strain dependencies of the critical temperature Tc along the a and b crystal axes were investigated over a wide strain region from compression to tension. We found that the strain dependencies of Tc for the a and b axes obey a power law but exhibit opposite slopes. In particular, the maximum value of Tc is obtained when the CuO2 plane becomes a square, and its lattice constant is close to 0.385 nm. It is suggested that a tetragonal structure with a ≈ 0.385 nm is the optimum condition for a high critical temperature in high-Tc cuprates.
机译:最近,我们通过在外部单轴应变下进行退火,成功地解开了REBa2Cu3O7(RE123,RE =稀土元素)涂层的导体。使用未缠绕的RE123胶带,在从压缩到拉伸的宽应变区域上研究了临界温度Tc沿a和b晶轴的单轴应变依赖性。我们发现,a和b轴的Tc应变相关性服从幂定律,但呈现相反的斜率。特别地,当CuO 2平面变成正方形并且其晶格常数接近0.385 nm时,获得Tc的最大值。提出在高Tc铜酸盐中,高临界温度的最佳条件是a≈0.385 nm的四边形结构。

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