论文标题
比金属陌生
Stranger than Metals
论文作者
论文摘要
尽管传统金属的电阻率随温度而增加,但其$ t依赖性在低温或高温下消失,尽管出于不同的原因。在这里,我们回顾了一类材料,称为\ lq Strange'金属,可以违反这两种原则。在表现出这种行为的材料中,电阻率的斜率变化是由于平均自由路径下降到晶格常数以下或$ t \ rightarrow 0 $的情况下,这表明在低$ t $下的电荷载体之间完全连续性。由于颗粒不能比原子间间距短的尺度散布,因此奇怪的金属性引起了质疑位置的相关性和基础电流的粒子图片。这篇综述着重于候选奇怪金属的传输和光谱数据,以隔离并确定统一的物理原理。要特别注意量子关键,普朗克耗散,莫特尼斯以及具有明确的实验性签名的新规定原理是否需要考虑奇怪金属中的非本地运输。对于丘比特,证明奇怪的金属性可以跟踪超流体密度,从而使该状态的理论成为解决高温超导性谜语的主要障碍。
Although the resistivity in traditional metals increases with temperature, its $T$ dependence vanishes at low or high temperature, albeit for different reasons. Here, we review a class of materials, known as \lq strange' metals, that can violate both principles. In materials exhibiting such behavior, the change in slope of the resistivity as the mean free path drops below the lattice constant, or as $T \rightarrow 0$, can be imperceptible, suggesting complete continuity between the charge carriers at low and high $T$. Since particles cannot scatter at length scales shorter than the interatomic spacing, strange metallicity calls into question the relevance of locality and a particle picture of the underlying current. This review focuses on transport and spectroscopic data on candidate strange metals with an eye to isolate and identify a unifying physical principle. Special attention is paid to quantum criticality, Planckian dissipation, Mottness, and whether a new gauge principle, which has a clear experimental signature, is needed to account for the non-local transport seen in strange metals. For the cuprates, strange metallicity is shown to track the superfluid density, thereby making a theory of this state the primary hurdle in solving the riddle of high-temperature superconductivity.