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首页> 外文期刊>Applied Surface Science >Effects of laser-induced periodic surface structures on the superconducting properties of Niobium
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Effects of laser-induced periodic surface structures on the superconducting properties of Niobium

机译:激光诱导的周期性表面结构对铌超导性能的影响

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摘要

It is well known that the use of ultrashort (fs) pulsed lasers can induce the generation of (quasi-) periodic nanostructures (LIPSS, ripples) on the surface of many materials. Such nanostructures have also been observed in sample's surfaces irradiated with UV lasers with a pulse duration of 300 ps. In this work, we compare the characteristics of these nanostructures on 1-mm and on 25-mu m thick niobium sheets induced by 30 fs n-IR and 300 ps UV pulsed lasers. In addition to conventional continuous or burst mode processing configurations, two-dimensional laser beam and line scanning modes have been investigated in this work. The latter allows the processing of large areas with a more uniform distribution of nanostructures at the surface. The influence of the generated nanostructures on the superconducting properties of niobium has also been explored. For this aim, magnetic hysteresis loops have been measured at different cryogenic temperatures to analyse how these laser treatments affect the flux pinning behaviour and, in consequence, the superconductor's critical current values. It was observed that laser treatments are able to modify the superconducting properties of niobium samples.
机译:众所周知,使用超短(fs)脉冲激光可以在许多材料的表面上引发(准)周期性纳米结构(LIPSS,波纹)的产生。还已经在以300 ps脉冲持续时间的UV激光照射的样品表面中观察到了此类纳米结构。在这项工作中,我们比较了30 fs n-IR和300 ps UV脉冲激光在1mm和25μm厚的铌片上形成的纳米结构的特性。除了常规的连续或突发模式处理配置之外,这项工作还研究了二维激光束和线扫描模式。后者允许处理较大面积的纳米结构,使其在表面的分布更均匀。还研究了生成的纳米结构对铌超导性能的影响。为此,已经在不同的低温温度下测量了磁滞回线,以分析这些激光处理如何影响磁通钉扎行为,进而影响超导体的临界电流值。据观察,激光处理能够改变铌样品的超导性能。

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