...
首页> 外文期刊>Nanotechnology >The relationship between quantum transport and microstructure evolution in carbon-sheathed Pt granular metal nanowires
【24h】

The relationship between quantum transport and microstructure evolution in carbon-sheathed Pt granular metal nanowires

机译:碳鞘Pt颗粒金属纳米线的量子输运与微观结构演变之间的关系

获取原文
获取原文并翻译 | 示例

摘要

The carbon-sheathed Pt nanowires fabricated by focused ion beam induced deposition were Pt grains in a Ga-doped carbon matrix. The dimensions of the Pt quantum dots and the intergrain coupling strength were modified through annealing the nanowires, and therefore our investigation demonstrates a tunable 'quantum metal' system by experiment via adjusting both the effects of electron-electron (e-e) interaction and the quantum interference. At low temperatures, the as-deposited samples display a root T temperature dependence of resistivity, while the 500 degrees C annealed samples exhibit a ln(T) temperature dependence of conductivity. For the 900 degrees C annealed samples, the conductivity was enhanced by one order of magnitude, accompanied by a metallic temperature dependence of resistivity and a negative magnetoresistance. The interesting transitions from e-e interactions to local voltage fluctuations, from electron localization to delocalization, from tunneling transport between isolated Pt grains to diffusive transport in continuously conductive metal, and from weak antilocalization with spin-orbital scattering to weak localization, are discussed with reference to the evolution of the sample microstructures. The results and discussions may be valuable for understanding how the microstructures influence the manner of electron transport through controlling the intergrain coupling strength, intragrain confinements, and the degree of disorder.
机译:通过聚焦离子束诱导沉积制备的带有碳鞘的Pt纳米线是Ga掺杂碳基体中的Pt晶粒。通过退火纳米线来修改Pt量子点的尺寸和晶间耦合强度,因此,我们的研究通过调节电子-电子(ee)相互作用和量子干涉的影响,通过实验证明了可调谐的“量子金属”系统。在低温下,沉积的样品显示出电阻率的根T温度依赖性,而500摄氏度退火的样品则显示出电导率的ln(T)温度依赖性。对于900摄氏度的退火样品,电导率提高了一个数量级,同时伴随着金属温度对电阻率和负磁阻的依赖性。讨论了从ee相互作用到局部电压波动,从电子定位到离域,从孤立的Pt晶粒之间的隧穿传输到连续导电金属中的扩散传输以及从具有自旋轨道散射的弱反定位到弱定位的有趣转变。样品微观结构的演变。结果和讨论对于理解微结构如何通过控制晶间耦合强度,晶内限制和无序度如何影响电子传输方式可能是有价值的。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号