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Nanoscale assembly of superconducting vortices with scanning tunnelling microscope tip

机译:扫描隧道显微镜尖端对超导涡旋的纳米组装

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摘要

Vortices play a crucial role in determining the properties of superconductors as well as their applications. Therefore, characterization and manipulation of vortices, especially at the single-vortex level, is of great importance. Among many techniques to study single vortices, scanning tunnelling microscopy (STM) stands out as a powerful tool, due to its ability to detect the local electronic states and high spatial resolution. However, local control of superconductivity as well as the manipulation of individual vortices with the STM tip is still lacking. Here we report a new function of the STM, namely to control the local pinning in a superconductor through the heating effect. Such effect allows us to quench the superconducting state at nanoscale, and leads to the growth of vortex clusters whose size can be controlled by the bias voltage. We also demonstrate the use of an STM tip to assemble single-quantum vortices into desired nanoscale configurations.
机译:涡旋在确定超导体的性质及其应用中起着至关重要的作用。因此,特别是在单涡旋水平上,表征和控制涡旋非常重要。在研究单个涡旋的许多技术中,扫描隧道显微镜(STM)由于其能够检测局部电子状态和高空间分辨率而脱颖而出,是一种强大的工具。但是,仍然缺乏对超导性的局部控制以及使用STM尖端对单个涡旋的操纵。在这里,我们报告了STM的一项新功能,即通过加热效应来控制超导体中的局部钉扎。这种效应使我们可以在纳米级淬灭超导状态,并导致涡团簇的生长,其尺寸可以由偏置电压控制。我们还演示了使用STM尖端将单量子涡旋组装成所需的纳米级结构的用法。

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