Grimaldi Gaia, Leo Antonio, Avitabile Francesco, Martucciello Nadia, Galluzzi Armando, Polichetti Massimiliano, Pace Sandro, Nigro Angela
CNR SPIN, Salerno, Italy.
Nanotechnology. 2019 Oct 18;30(42):424001. doi: 10.1088/1361-6528/ab3314. Epub 2019 Jul 17.
In superconducting materials a dynamical rearrangement of the vortex lattice occurs by forcing vortices at high velocities, until the system can become unstable. This phenomenon is known as vortex lattice instability, in which a sudden transition drives the superconducting system abruptly to the normal state. We present an experimental study on submicron bridges of NbN and NbTiN ultra-thin films with a thickness of few nanometers. The nanoscale effect on vortex lattice instability is investigated not only by the ultra-thin thickness in wide bridges, but also by changing the direction of the external magnetic field applied parallel and perpendicular to the c-axis epitaxial films. Indeed, measurements are performed for both orientations and show the vortex lattice instability, regardless of the superconducting material. Critical currents I as well as instability currents I* have been compared. However, only in the parallel configuration an unusual 'flying birds' feature appears in the magnetic field dependence of current switching, as a consequence of the ratio I*/I that is approaching 1. This amazing tendency becomes relevant for practical applications involving nanostructures, since by scaling down sample thickness and rotating the external field towards the in-plane orientation, the ultra-thin film geometry can mimic the bridge narrowing down to the nanoscale.
在超导材料中,通过高速驱动涡旋,涡旋晶格会发生动态重排,直到系统变得不稳定。这种现象被称为涡旋晶格不稳定性,其中突然的转变会将超导系统突然驱动到正常状态。我们对厚度为几纳米的NbN和NbTiN超薄膜的亚微米桥进行了实验研究。不仅通过宽桥中的超薄厚度,而且通过改变平行和垂直于c轴外延膜施加的外部磁场方向,研究了纳米尺度对涡旋晶格不稳定性的影响。实际上,对两种取向都进行了测量,并且显示出涡旋晶格不稳定性,与超导材料无关。已经比较了临界电流I以及不稳定性电流I*。然而,只有在平行配置中,由于I*/I的比值接近1,在电流切换的磁场依赖性中会出现不寻常的“飞鸟”特征。这种惊人的趋势对于涉及纳米结构的实际应用变得至关重要,因为通过缩小样品厚度并将外部磁场旋转到面内取向,超薄膜几何结构可以模拟缩小到纳米尺度的桥。