Bawa Ambika, Jha Rajveer, Sahoo Sangeeta
Quantum Phenomena &Applications, CSIR-National Physical Laboratory, Council of Scientific and Industrial Research, Dr. K. S. Krishnan Marg, New Delhi, India- 110012.
Sci Rep. 2015 Aug 25;5:13459. doi: 10.1038/srep13459.
The interplay between superconductivity (SC) and ferromagnetism (FM) when embedded together has attracted unprecedented research interest due to very rare coexistence of these two phenomena. The focus has been mainly put into the proximity induced effects like, coexistence of magnetism and superconductivity, higher critical current, triplet superconductivity etc. However, very little attention has been paid experimentally to the role of magnetic constituent on triggering phase slip processes in the composite films (CFs). We demonstrate that less than 1 at.% of magnetic contribution in the CFs can initiate phase slip events efficiently. Due to advanced state-of-the-art fabrication techniques, phase slip based studies have been concentrated mainly on superconducting nanostructures. Here, we employ wide mesoscopic NbGd based CFs to study the phase slip processes. Low temperature current-voltage characteristics (IVCs) of CFs show stair-like features originated through phase slip events and are absent in pure SC films. Depending on the bias current and temperature, distinct regions, dominated by Abrikosov type vortex-antivortex (v-av) pairs and phase slip events, are observed. The results presented here open a new way to study the phase slip mechanism, its interaction with v-av pairs in two dimensions and hence can be useful for future photonic and metrological applications.
当超导性(SC)和铁磁性(FM)共存时,它们之间的相互作用由于这两种现象极为罕见的共存情况而吸引了前所未有的研究兴趣。研究重点主要集中在近邻诱导效应上,如磁性与超导性的共存、更高的临界电流、三重态超导性等。然而,在实验上,很少有人关注磁性成分在复合薄膜(CFs)中触发相位滑移过程的作用。我们证明,CFs中小于1原子百分比的磁性贡献就能有效地引发相位滑移事件。由于先进的制造技术,基于相位滑移的研究主要集中在超导纳米结构上。在这里,我们使用宽介观的基于NbGd的CFs来研究相位滑移过程。CFs的低温电流-电压特性(IVCs)呈现出由相位滑移事件产生的阶梯状特征,而在纯超导薄膜中则不存在。根据偏置电流和温度,观察到由阿布里科索夫型涡旋-反涡旋(v-av)对和相位滑移事件主导的不同区域。这里给出的结果为研究相位滑移机制及其在二维中与v-av对的相互作用开辟了一条新途径,因此对未来的光子学和计量学应用可能有用。