论文标题
高质量晶体铅薄膜中的异常线性磁化
Anomalous linear magnetoresistance in high quality crystalline lead thin films
论文作者
论文摘要
引人入胜的新现象激发了人们对量子物理学的新理解,例如量子大小效应和量子相变等。样品质量的改善使探索二维系统中的内在特性变得更加有希望。在本文中,我们表明晶体界面条纹的不增压层可以提高铅膜的质量,并显着增强磁倍率的幅度。通过执行系统的运输测量,揭示了主要的异常线性磁磁性,并且广泛使用的教区 - 小木模型和Abrikosov的解释未能描述观察结果。取而代之的是,我们基于线性频带结构提出了一种新的线性磁化模型,该模型与实验结果显示了很好的一致性。我们的研究揭示了线性磁阻的新来源,这也可能有助于了解具有电子结构线性分散的其他材料中的线性磁倍率。
Intriguing novel phenomena in lead films inspire new understanding of quantum physics, such as quantum size effect and quantum phase transitions etc. The improvement of the sample quality makes it even more promising to explore the intrinsic properties in two-dimensional system. In this paper, we show that the crystalline interfacial striped incommensurate layer can increase the quality of the lead films and significantly enhance the magnitude of magnetoresistance. By performing systematic transport measurement, a predominant anomalous linear magnetoresistance is revealed, and the widely used Parish-Littlewood model and Abrikosov's explanation fail to describe the observation. Instead, we propose a new model of linear magnetoresistance based on linear band structure, which shows a good agreement with the experimental results. Our studies reveal a novel origin of linear magnetoresistance which may also be helpful to understand the linear magnetoresistance in other materials with linear dispersion of electronic structure.