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首页> 外文期刊>Applied Physics Letters >Superconducting vortex profile from fixed point measurements the 'Lazy Fisherman' tunneling microscopy method
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Superconducting vortex profile from fixed point measurements the 'Lazy Fisherman' tunneling microscopy method

机译:固定点测量中的超导涡旋轮廓“懒惰渔夫”隧道显微镜法

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We introduce a mode of operation for studying the vortex phase in superconductors using scanning tunneling microscopy (STM). While in the conventional STM method, the tip is scanned over a sample in which a fixed vortex pattern is prepared, in our "Lazy Fisherman" method the STM tip is kept fixed at a selected location while the vortices are being moved by varying the applied magnetic field. By continuously acquiring the local tunneling conductance spectra, dI/dV(V), we detect the changes in the local density of states under the tip due to the vortex motion. With no need for scanning, the method permits one to extend the study of vortices to samples in which scanning is difficult or even impossible due to surface nonuniformity and allows one to study vortex dynamics. Using a statistical analysis of the spectra, we reconstruct the single vortex zero bias conductance profile. We apply the method to the c-axis face of a MgB_2 single crystal sample and obtain a vortex profile with a coherence length, ξ of 57±2 nm.
机译:我们介绍了一种使用扫描隧道显微镜(STM)研究超导体中涡旋相的操作模式。在传统的STM方法中,将尖端扫描到准备有固定涡旋图案的样品上,而在我们的“懒惰渔夫”方法中,通过改变施加的涡旋来移动STM尖端时,将其固定在选定的位置磁场。通过连续获取局部隧穿电导谱dI / dV(V),我们检测到由于涡旋运动而导致尖端下方状态的局部密度变化。无需扫描,该方法可以将涡流研究扩展到由于表面不均匀而难以扫描甚至无法扫描的样品,并且可以研究涡流动力学。使用频谱的统计分析,我们重建了单涡旋零偏置电导曲线。我们将该方法应用于MgB_2单晶样品的c轴面,并获得了相干长度ξ为57±2 nm的涡旋轮廓。

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