Lillie Scott E, Broadway David A, Dontschuk Nikolai, Scholten Sam C, Johnson Brett C, Wolf Sebastian, Rachel Stephan, Hollenberg Lloyd C L, Tetienne Jean-Philippe
Centre for Quantum Computation and Communication Technology, School of Physics, The University of Melbourne, Melbourne, VIC 3010, Australia.
School of Physics, The University of Melbourne, Melbourne, VIC 3010, Australia.
Nano Lett. 2020 Mar 11;20(3):1855-1861. doi: 10.1021/acs.nanolett.9b05071. Epub 2020 Feb 6.
We realize a cryogenic wide-field nitrogen-vacancy microscope and use it to image Abrikosov vortices and transport currents in a superconducting Nb film. We observe the disappearance of vortices upon increase of laser power and their clustering about hot spots upon decrease, indicating local quenching of superconductivity by the laser. Resistance measurements confirm the presence of large temperature gradients across the film. We then investigate the effect of such gradients on transport currents where the current path is seen to correlate with the temperature profile even in the fully superconducting phase. In addition to highlighting the role of temperature inhomogeneities in superconductivity phenomena, this work establishes that under sufficiently low laser power conditions wide-field nitrogen-vacancy microscopy enables imaging over mesoscopic scales down to 4 K with submicrometer spatial resolution, providing a new platform for spatially resolved investigations of a range of systems from topological insulators to van der Waals ferromagnets.
我们实现了一台低温宽场氮空位显微镜,并利用它对超导铌薄膜中的阿布里科索夫涡旋和输运电流进行成像。我们观察到,随着激光功率的增加,涡旋消失;随着激光功率的降低,涡旋在热点周围聚集,这表明激光会使超导性发生局部猝灭。电阻测量证实了薄膜上存在较大的温度梯度。然后,我们研究了这种梯度对输运电流的影响,发现即使在完全超导相中,电流路径也与温度分布相关。除了突出温度不均匀性在超导现象中的作用外,这项工作还表明,在足够低的激光功率条件下,宽场氮空位显微镜能够在低至4K的温度下以亚微米空间分辨率对介观尺度进行成像,为从拓扑绝缘体到范德华铁磁体等一系列系统的空间分辨研究提供了一个新平台。