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单晶 MgB2 纳米线的磁化和输运性质。

Magnetization and electric transport properties of single-crystal MgB2 nanowires.

机构信息

Department of Physics, National Changhua University of Education, Changhua, 500, Taiwan.

出版信息

Nanotechnology. 2012 Nov 23;23(46):465706. doi: 10.1088/0957-4484/23/46/465706. Epub 2012 Oct 23.

Abstract

High quality single-crystal magnesium diboride (MgB(2)) nanowires with lengths exceeding 10 μm were successfully synthesized by hybrid physical chemical vapor deposition. The magnetization and electrical transport properties of single-crystal MgB(2) nanowires (NWs) were measured. The superconducting transition temperature of the NWs was 37 K, as confirmed by magnetization measurements. The disordered behavior of the nanowires was observed by four-terminal current-voltage characteristic measurements of an individual NW from T = 10 to 300 K. The temperature-dependent resistivity curves for seven NWs collapsed into a universal curve described by the variable range hopping model, showing intrinsic nonmetallic transport properties. This implies that the granular superconducting defect states are critical to the superconductivity of the individual MgB(2) NWs.

摘要

通过混合物理化学气相沉积法成功合成了长度超过 10μm 的高质量单晶二硼化镁 (MgB(2)) 纳米线。测量了单晶 MgB(2)纳米线 (NWs) 的磁化和输运性质。通过对单个 NW 的磁化测量,证实了 NWs 的超导转变温度为 37 K。通过对单个 NW 从 10 到 300 K 的四端电流-电压特性测量,观察到了纳米线的无序行为。七个 NW 的温度相关电阻率曲线归结为一个通用曲线,由变程跳跃模型描述,显示出本征的非金属输运性质。这表明颗粒超导缺陷态对单个 MgB(2) NW 的超导性至关重要。

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