来自玻璃状秩序的线性电磁阻
Jaewon Kim1, Ehud Altman1, Shubhayu Chatterjee2
1Department of Physics, University of California, Berkeley, CA 94720.
概括
强烈相关的金属表现出线性电磁阻 (LMR),挑战了费米液体理论. 这项研究解释了LMR.
科学领域:
- 凝聚物质物理学 凝聚物质物理学
- 量子材料科学是一种量子材料科学.
背景情况:
- 许多相关的金属显示B线性磁阻 (LMR),偏离了费米液体理论预测的[公式:参见文本]缩放.
- 这种现象在各种材料中被观察到,这表明有一个普遍的潜在机制.
研究的目的:
- 为相关金属中B线性磁电阻 (LMR) 的起源提供统一的解释.
- 确定对普遍的LMR倾斜率负责的关键材料特征.
主要方法:
- 开发两种微观模型来研究LMR与接近破坏对称度的顺序之间的关系.
- 分析顺序参数的波向量和费米表面节点在LMR出现中的作用.
主要成果:
- 证明在特定条件下,具有普遍斜率的LMR在特定阶段附近无处不在出现.
- 根据订单参数的性质,确定了驱动LMR的两个不同的物理机制.
- 导出了磁场范围的边界,其中可以观察到LMR.
结论:
- 接近破坏对称性的顺序是对相关金属普遍的LMR的统一解释.
- 费米表面上存在有限的波向量顺序或节点对于LMR至关重要.
- 该理论提供了对奇怪金属物理学的见解,并解释了最近在库布拉特和莫雷材料中的实验发现.
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