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扭曲超导纳米线纱线中的异常负电阻现象

Anomalous Negative Resistance Phenomena in Twisted Superconducting Nanowire Yarns.

作者信息

Kim Jeong-Gyun, Hong Sung Ju, Kang Haeyong, Suh Dongseok

机构信息

Department of Energy Science, Sungkyunkwan University, Suwon 16419, Republic of Korea.

Center for Integrated Nanostructure Physics, Institute for Basic Science, Suwon 16419, Republic of Korea.

出版信息

ACS Nano. 2020 Mar 24;14(3):3337-3343. doi: 10.1021/acsnano.9b09026. Epub 2020 Feb 25.

DOI:10.1021/acsnano.9b09026
PMID:32069389
Abstract

We report unusual absolute negative resistance phenomena in twisted superconducting yarns consisting of niobium-nitride (NbN) nanowires formed on a template of aligned carbon nanotube (CNT) sheets. In the vicinity of the superconducting critical temperature and critical current, the electrical resistance with a standard four-probe configuration exhibits negative values for many wire-shaped twisted yarns. This anomalous behavior at the superconducting transition stage is analyzed using a simplified circuit model, where the charge conduction is determined by the combination between the intra- and internanofiber transports inside the yarn. The superconducting transition of intrafibrillar transport along CNT-templated NbN nanowires was distinguished from that of an interfibrillar one, where the latter exhibits the ensemble property of superconducting weak links among adjacent NbN nanowires. Furthermore, the topological similarity between the sheet of an aligned array of nanowires and the yarn of twisted nanofibrils enables the occurrence of this anomaly. This study indicates that the quantitative network-based approach is effective for the analysis of anomalous charge conduction through nanowire-based anisotropic materials.

摘要

我们报道了在由在排列的碳纳米管(CNT)片模板上形成的氮化铌(NbN)纳米线组成的扭曲超导纱线中出现的异常绝对负电阻现象。在超导临界温度和临界电流附近,采用标准四探针配置时,许多线状扭曲纱线的电阻呈现负值。利用简化电路模型分析了超导转变阶段的这种异常行为,其中电荷传导由纱线内部纳米纤维内和纳米纤维间传输的组合决定。沿CNT模板化NbN纳米线的纤维内传输的超导转变与纤维间传输的超导转变不同,后者表现出相邻NbN纳米线之间超导弱连接的整体特性。此外,纳米线排列阵列的片层与扭曲纳米纤维纱线之间的拓扑相似性使得这种异常得以发生。这项研究表明,基于定量网络的方法对于分析通过基于纳米线的各向异性材料的异常电荷传导是有效的。

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