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Preferred Orientation Contribution to the Anisotropic Normal State Resistivity in Superconducting Melt-Cast Processed Bi2Sr2CaCu2O8+δ

机译:超导熔铸法Bi2Sr2CaCu2O8 +δ中各向异性常态电阻率的优选取向贡献

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摘要

We describe how the contribution of crystallographic texture to the anisotropy of the resistivity of polycrystalline samples can be estimated by averaging over crystallographic orientations through a geometric mean approach. The calculation takes into account the orientation distribution refined from neutron diffraction data and literature values for the single crystal resistivity tensor. The example discussed here is a melt-cast processed Bi2Sr2CaCu2O8+δ (Bi-2212) polycrystalline tube in which the main texture component is a <010> fiber texture with relatively low texture strength. Experimentally-measured resistivities along the longitudinal, radial, and tangential directions of the Bi-2212 tube were compared to calculated values and found to be of the same order of magnitude. Calculations for this example and additional simulations for various texture strengths and single crystal resistivity anisotropies confirm that in the case of highly anisotropic phases such as Bi-2212, even low texture strengths have a significant effect on the anisotropy of the resistivity in polycrystalline samples.
机译:我们描述了如何通过几何均值方法对晶体取向进行平均,从而可以估算出晶体织构对多晶样品电阻率各向异性的贡献。该计算考虑了从中子衍射数据和单晶电阻率张量的文献值中提炼的取向分布。此处讨论的示例是经过熔铸处理的Bi2Sr2CaCu2O8 +δ(Bi-2212)多晶管,其中主要纹理成分是具有较低纹理强度的<010>纤维纹理。将Bi-2212管沿纵向,径向和切线方向的实验测量电阻率与计算值进行比较,发现它们具有相同的数量级。此示例的计算以及对各种纹理强度和单晶电阻率各向异性的附加仿真证实,在诸如Bi-2212这样的高度各向异性相的情况下,即使低纹理强度也对多晶样品中的电阻率各向异性产生重大影响。

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