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具有图案化纳米结构的超导 MoGe 薄膜中磁涡旋的人工冰系统的实现。

Realization of artificial ice systems for magnetic vortices in a superconducting MoGe thin film with patterned nanostructures.

机构信息

Materials Science Division, Argonne National Laboratory, Argonne, Illinois 60439, USA.

出版信息

Phys Rev Lett. 2013 Aug 9;111(6):067001. doi: 10.1103/PhysRevLett.111.067001. Epub 2013 Aug 5.

Abstract

We report an anomalous matching effect in MoGe thin films containing pairs of circular holes arranged in such a way that four of those pairs meet at each vertex point of a square lattice. A remarkably pronounced fractional matching was observed in the magnetic field dependences of both the resistance and the critical current. At the half matching field the critical current can be even higher than that at zero field. This has never been observed before for vortices in superconductors with pinning arrays. Numerical simulations within the nonlinear Ginzburg-Landau theory reveal a square vortex ice configuration in the ground state at the half matching field and demonstrate similar characteristic features in the field dependence of the critical current, confirming the experimental realization of an artificial ice system for vortices for the first time.

摘要

我们报告了在含有两对圆形孔的 MoGe 薄膜中出现的异常匹配效应,这些孔的排列方式使得每个正方形晶格的顶点处都有四对孔相遇。在电阻和临界电流的磁场依赖性中观察到了非常显著的分数匹配。在半匹配场时,临界电流甚至可能高于零场时的临界电流。这在具有钉扎阵列的超导体中的涡旋中以前从未观察到过。在非线性吉布斯-朗道理论的数值模拟中,在半匹配场下发现了基态中的正方形涡旋冰结构,并在临界电流的磁场依赖性中展示了类似的特征,这首次证实了人工涡旋冰系统的实验实现。

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