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A model free real space reconstruction of the magnetic field due to the vortex lattice.

机译:由于涡旋晶格而产生的磁场的无模型的真实空间重构。

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摘要

Typically small angle neutron scattering (SANS) experiments on the vortex lattice of type II superconductors measures only the first order Bragg reflections. If higher order Bragg reflections are measured they are simply ignored. In our study, the measured higher order Bragg reflections allow us to perform a more comprehensive data analysis with minimum theoretical input.;We have performed SANS experiments on the non-magnetic members, YNi 2B2C and LuNi2B2C and the magnetic member, TmNi2B2C of the rare-earth nickel borocarbide family of superconductors. With an unprecedented number of reflections observed, we are able to analysis the vortex lattice form factors in a model free fashion to calculate the magnetic field modulation. LuNi2B2C displayed highest number of observed Bragg reflections where up to the (32) reflection was measured. With our model free analysis of the magnetic field modulation, we compare our results with numerical calculation based on the quasiclassical Eilenberger theory performed by Ichioka et al. Our results are most consistent with an anisotropic superconducting gap, either d-wave or anisotropic s-wave.;The magnetic field reconstruction in all three materials studied are consistent and robust. While the absolute values of the field does change with variation of the form factors, the overall features do not change. The radius of the vortex core, defined as the maximum in the superconducting screening current, was calculated and agreed reasonably with coherence length measurements. The current around the vortex displayed a four-fold anisotropy which is typical of the borocarbides. The vortex lattice was measured in both square and rhombic unit cell symmetries. A symmetrization of the rhombic unit cell to square unit cell shows no appreciable change in the magnetic field reconstruction. With measurements done on both magnetic and non-magnetic borocarbides, we are able to estimate the interaction between magnetism and superconductivity on the measured vortex lattice form factors in TmNi2B2C.
机译:通常,在II型超导体的涡旋晶格上进行小角中子散射(SANS)实验只能测量一级布拉格反射。如果测量了更高阶的布拉格反射,则将其忽略不计。在我们的研究中,所测量的高阶布拉格反射使我们能够以最少的理论输入进行更全面的数据分析。;我们已经对非磁性构件YNi 2B2C和LuNi2B2C以及稀有的磁性构件TmNi2B2C进行了SANS实验硼碳化硼镍超导体系列。观察到空前的反射,我们能够以无模型的方式分析涡旋晶格的形状因数,以计算磁场调制。 LuNi2B2C显示观察到的布拉格反射次数最多,其中测量到的反射次数最多为(32)。通过对磁场调制的无模型分析,我们将结果与基于Iokoka等人的准经典Eilenberger理论的数值计算进行了比较。我们的结果与各向异性超导间隙(d波或各向异性s波)最一致。研究的所有三种材料的磁场重建都是一致且稳定的。尽管场的绝对值会随形状因数的变化而变化,但总体特征不会变化。计算出旋涡芯的半径,该半径定义为超导屏蔽电流中的最大值,并与相干长度测量结果合理地吻合。涡流周围的电流表现出四倍的各向异性,这是硼碳化物的典型特征。以正方形和菱形晶胞对称性测量涡旋晶格。菱形晶胞到正方形晶胞的对称化显示在磁场重建中没有明显的变化。通过对磁性和非磁性硼碳化物的测量,我们能够估算出TmNi2B2C中涡旋晶格形状因数上的磁性和超导电性之间的相互作用。

著录项

  • 作者

    Densmore, John Michael.;

  • 作者单位

    University of Notre Dame.;

  • 授予单位 University of Notre Dame.;
  • 学科 Physics Low Temperature.;Physics Condensed Matter.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 156 p.
  • 总页数 156
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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