来自同位素普朗克散射速率的线性内温度电阻
Gaël Grissonnanche1,2,3, Yawen Fang2, Anaëlle Legros1,4
1Département de physique, Institut quantique, RQMP, Université de Sherbrooke, Sherbrooke, Québec, Canada.
Nature
|July 29, 2021
概括
奇怪的金属表现出异常的线性温度电阻, 这项研究揭示了这种散射达到了一个基本的极限,即普朗克极限,
科学领域:
- 凝聚物质物理学
- 材料科学
- 量子材料
背景情况:
- 传统的金属表现出二次温度依赖的电阻.
- 奇怪的金属显示电阻线性与温度, 建议一个基本的散射极限.
- 这种普朗克极限在奇异金属中的起源基本上是未知的.
研究的目的:
- 在奇怪的金属中研究线性温度电阻的起源.
- 在特定的酸盐材料中测量散射率及其特性.
- 确定散射速率是否在普朗克极限和它的方向依赖.
主要方法:
- 在La1.6-xNdx0.4SrxCuO4上取决于角度的磁阻测量.
- 与角度分辨率的光辐射光谱数据进行定量比较.
- 对电荷载体散射率的分析.
主要成果:
- 在酸盐中确认了精确的费米表面.
- 观察到在普朗克极限 (α = 1.2 ± 0.4) 的线性散射速率.
- 发现普朗克的散射率是同otropic, 矛盾热点模型.
结论:
- 奇异金属的线性-温度电阻来自同位素的,独立于动量的不弹性散射.
- 散射速度达到基本的普朗克极限.
- 这些发现挑战了现有的理论模型,
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