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Directional pinning and anisotropy in YBa2Cu3O7-x with BaZrO3 nanorods: intrinsic and nanorods-induced anisotropy

机译:具有BaZrO3纳米棒的YBa2Cu3O7-x中的定向钉扎和各向异性:内在和纳米棒诱导的各向异性

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摘要

We present a study of the anisotropic vortex parameters as obtained from measurements of the micro- wave complex resistivity in the vortex state with a tilted applied magnetic field in YBa2Cu3O7-x thin films with BaZrO3 nanorods. We present the angular dependence of the vortex viscosity g, the pinning constant kp and the upper limit for the creep factor vM. We show that the directional effect of the nanorods is absent in g, which is dictated by the mass anisotropy c. By contrast, pinning-mediated properties are strongly affected by the nanorods. It is significant that the pinning and creep affected by the nanorods is detectable also at our very high operating frequency, which implies very short-range displacements of the vortices from their equilibrium position.
机译:我们提出了各向异性涡流参数的研究,该参数是通过在具有BaZrO3纳米棒的YBa2Cu3O7-x薄膜中倾斜施加磁场的情况下,通过测量涡旋状态下微波复电阻率而获得的。我们给出了涡旋粘度g,钉扎常数kp和蠕变因子vM的上限的角度依赖性。我们表明,纳米棒的定向效应不存在,以g表示,这是由质量各向异性c决定的。相反,钉扎介导的性质受纳米棒的强烈影响。重要的是,在我们非常高的工作频率下,也可以检测到受纳米棒影响的钉扎和蠕变,这意味着涡旋与其平衡位置之间的位移非常短。

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