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首页> 外文期刊>Physica, C. Superconductivity and its applications >Dependence of the critical temperature of YBCO thin films on spin-polarized quasiparticle injection
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Dependence of the critical temperature of YBCO thin films on spin-polarized quasiparticle injection

机译:YBCO薄膜的临界温度与自旋极化准粒子注入的关系

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Non-equilibrium effects in cuprate superconductors caused by quasiparticle (QP) injection are investigated by electrical transport measurements. We explore tile reduction of T-c in YBa2Cu3O7 thin films by highly spin-polarized QP injection and compare the results with weakly polarized as well as ordinary QP injection. Heterostructures consisting of ferromagnetic La0.67Ca0.33MnO3 and superconducting YBa2Cu3O7 layers were fabricated by pulsed laser deposition techniques in conjunction with shadow mask methods to define an appropriate sample geometry. Standard four probe measurement techniques have been applied for probing the transition to superconductivity of YBCO thin films with and without quasiparticle injection. We observe a NO decrease of T-c for injection current densities of 5 x 10(-2) A/cm(2) in the case of unpolarized QPs whereas highly spin-polarized QPs show a much stronger decrease of 14%. This result clearly demonstrates that the spin plays a crucial role in the T-c reduction. Using the theoretical description of QP injection effects of Bhattacharjee and Sardar based on the Owen-Scalapino approach for the description of non-equilibrium effects in superconductors we find a surprisingly good agreement of the experimental data with the model for interlayer tunneling. (c) 2007 Elsevier B.V. All rights reserved.
机译:通过电传输测量研究了准粒子(QP)注入在铜酸盐超导体中产生的非平衡效应。我们探索通过高度自旋极化的QP注入减少YBa2Cu3O7薄膜中T-c的平铺,并将结果与​​弱极化以及普通QP注入进行比较。通过脉冲激光沉积技术结合阴影掩模方法,制造了由铁磁La0.67Ca0.33MnO3和超导YBa2Cu3O7层组成的异质结构,以定义合适的样品几何形状。已采用标准的四探针测量技术来探测有和没有准粒子注入的YBCO薄膜向超导的转变。我们观察到在无极化QP的情况下,注入电流密度为5 x 10(-2)A / cm(2)时T-c的NO降低,而高度自旋极化的QP则显示出14%的降低得多。该结果清楚地表明,自旋在T-c降低中起关键作用。使用基于Owen-Scalapino方法的Bhattacharjee和Sardar的QP注入效应的理论描述来描述超导体中的非平衡效应,我们发现实验数据与层间隧穿模型具有令人惊讶的良好一致性。 (c)2007 Elsevier B.V.保留所有权利。

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