论文标题
纹理超导体中各向异性和结晶石错位
Anisotropy and crystallite misalignment in textured superconductors
论文作者
论文摘要
各向异性晶体的错位导致各向异性的小值,并降低了纹理多晶超导体的临界电流密度。为了关联晶体未对准和面外各向异性,研究了纹理BI2223多晶超导体的磁性。使用不同的数据确定了微晶的方向角度的分布:扫描电子显微镜图像和磁滞性磁化回路,相对于样品的纹理平面,以不同角度应用外部磁场时。证明可以从垂直方向的磁化数据确定纹理样品中的分布和磁性角度的标准偏差。这些数据可以是针对样品的两个不同方向测量的不可逆磁化,或者是同时测量的磁化强度突出的磁化磁化强度,并平行于磁场。
A misalignment of anisotropic crystallites causes small values of anisotropy and decreases the critical current density of textured polycrystalline superconductors. To relate the crystallite misalignment and out-plane anisotropy, the magnetic properties of the textured Bi2223 polycrystalline superconductor were investigated. A distribution of orientation angles of crystallites was determined using different data: scanning electron microscopy images and hysteresis magnetization loops when an external magnetic field was applied at different angles with respect to the texturing plane of the sample. It was demonstrated that the standard deviation of the distribution and the magnetic disorder angle of crystallites in textured samples can be determined from the magnetization data in perpendicular directions. These data may be either the irreversible magnetization measured for two different orientations of the sample or the simultaneously measured magnetization projections parallel and perpendicular to the magnetic field.