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Dynamic ordering and instability of the vortex lattice in Nb films exhibiting moderately strong pinning

机译:钉扎强度中等的Nb薄膜中涡旋晶格的动态有序性和不稳定性

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摘要

We study the nonlinear effects in the current-voltage characteristics of Nb superconducting thin films, induced both by the current dependence of the pinning force and by the electric-field dependence of the flux-flow resistance of Abrikosov vortices driven by high electric currents. Despite of the quite strong pinning in our samples, by increasing the bias current, in a temperature dependent magnetic-field range, the moving vortex system undergoes a dynamical transition from a disordered to an ordered vortex lattice. Such transition leads to a quite sharp reduction of the dynamic pinning force corresponding to a peak in the current dependence of the differential flux-flow resistance. On the same samples, in a higher voltage-velocity regime, for a different temperature dependent magnetic-field range, an instability of the moving vortex lattice also occurs, with a sudden jump in the I-V curve from the non linear flux-flow branch to the linear normal resistive state. Within the Larkin-Ovchinnikov velocity dependence of the flux-flow resistance, this flux-flow instability has been studied as function of the magnetic field and temperature in order to get out its nonequilibrium electronic nature. Finally, we propose a dynamic phase diagram to describe the vortex lattice motion driven by high electric currents in the presence of such a disordered pinning landscape.
机译:我们研究了钉扎力的电流依赖性和高电流驱动的Abrikosov涡流的通量流阻的电场依赖性所引起的Nb超导薄膜的电流-电压特性中的非线性效应。尽管在我们的样品中钉扎力很强,但通过增加偏置电流,在取决于温度的磁场范围内,运动的涡旋系统会经历从无序到有序涡旋晶格的动态过渡。这种过渡导致动态钉扎力的急剧下降,该动态钉扎力对应于差分磁通-流阻的电流依赖性的峰值。在相同的样本上,在较高的电压-速度范围内,对于不同的温度相关磁场范围,还会出现移动涡流晶格的不稳定性,IV曲线从非线性磁通流分支突然跳变到线性法线电阻状态。在磁通-流阻的拉金-奥夫尼尼科夫速度依赖性内,已经研究了这种磁通-流不稳定性作为磁场和温度的函数,以求出其非平衡电子性质。最后,我们提出了一个动态相位图来描述在存在这种无序钉扎景观的情况下由高电流驱动的涡旋晶格运动。

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