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Line vortices in a three-dimensional ordered Josephson medium at a small pinning parameter

机译:销钉参数小的三维有序约瑟夫森介质中的线涡

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The structure and energy of a line vortex whose axis is aligned with the symmetry axis of a finite-thickness slab indefinitely long in two directions is calculated by solving a set of linear finite-difference equations. Fluxoid quantization conditions in cells near the center of the vortex serve as boundary conditions. An exact solution is approached by iterations in phase stepwise discontinuities that cannot be considered small. A close similarity between the configuration under study and a periodic sequence (chain) of vortices makes it possible to allow for the effect of the domain boundary on the structure and energy of the vortex. It is shown that, at any width of the slab, one can find a pinning parameter value so small that the vortex cannot be viewed as solitary and contributions from other vortices should be taken into account in calculation. Proceeding in this way, one can find the structure and energy of the vortex however small the pinning parameter is. The total energy of the vortex is its intrinsic energy plus the sum of its energies of interaction with other members of the chain. In turn, the intrinsic energy is the sum of the energies of the small discrete core and quasi-continuous outer shell. It is demonstrated that the energy of the core is a linear function of the pinning parameter and is comparable to the energy of the shell.
机译:通过求解一组线性有限差分方程,可以计算出其轴线在两个方向上无限长地与有限厚度平板的对称轴对齐的线涡的结构和能量。涡流中心附近的单元中的助焊剂量化条件用作边界条件。相位逐步不连续的迭代可以找到一个精确的解决方案,它不能被认为很小。研究中的构型与涡旋的周期性序列(链)之间的相似性使得可以考虑域边界对涡旋的结构和能量的影响。结果表明,在板坯的任何宽度上,都能找到很小的钉扎参数值,以致不能将涡旋视为孤立的,在计算时应考虑其他涡旋的影响。以这种方式进行,无论钉扎参数多么小,都可以找到涡旋的结构和能量。涡旋的总能量是其内在能量加上其与链中其他成员相互作用的能量之和。反过来,本征能量是小的离散核和准连续外壳的能量之和。已经证明,芯的能量是钉扎参数的线性函数,并且与壳的能量相当。

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