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Direct Observation of Geometrical Phase Transitions in Mesoscopic Superconductors by Scanning Tunneling Microscopy

机译:通过扫描隧道显微镜直接观察介观超导体中的几何相变

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Using scanning tunneling microscopy, we mapped the distribution of the local density of states in a single crystal superconductor heterostructure with an array of submicron normal metal islands. We observe the coexistence of strongly interacting multiquanta vortex lattice with interstitial Abrikosov vortices. The newly formed composite magnetic flux structure undergoes a series of phase transitions between different topological configuration states. The vortex configuration states are strongly dependent on the number of flux quanta and the nanoscale confinement architecture of the mesoscopic superconductor. Here, we present images of vortex phase transitions due to confinement effects when the number of magnetic flux quanta in the system changes. The vortex dynamics in these systems could serve as a model for behavior of confined many-body systems when the number of particles changes.
机译:使用扫描隧道显微镜,我们绘制了具有亚微米标准金属岛阵列的单晶超导体异质结构中态的局部密度分布。我们观察到与间隙Abrikosov涡旋强烈相互作用的多量子涡旋晶格并存。新形成的复合磁通结构在不同的拓扑构造状态之间经历一系列相变。涡旋构型状态强烈依赖于通量量子的数量和介观超导体的纳米级限制结构。在这里,我们介绍了当系统中的磁通量数量发生变化时,由于约束效应而产生的涡旋相变图像。这些系统中的涡旋动力学可以作为受限的多体系统在粒子数量变化时的行为模型。

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