论文标题
高度过高的铜塔的奇怪金属政权不连贯的运输
Incoherent transport across the strange metal regime of highly overdoped cuprates
论文作者
论文摘要
奇怪的金属具有高度非常规的运输特性,例如线性温度($ t $)电阻率,反向大厅的角度,其变化为$ t^2 $,以及线性的内在磁场($ h $)磁电阻。识别这些集体异常的起源已被证明是极具挑战性的,即使在具有简单带结构的孔掺杂的铜层中也是如此。普遍的教条是,铜层中的奇怪金属性与超导圆顶内的掺杂$ p*$的量子关键点相连。在这里,我们研究了两个超过$ p*$的兴奋剂水平的两个超导粉碎家庭的高面内磁力。在所有兴奋剂中,磁势都表现出正直的缩放,并以高$ h/t $比率形成线性。此外,发现它的幅度比常规理论预测的要大得多,对杂质散射和磁场方向不敏感。这些观察结果以及对零场和霍尔电阻的分析表明,尽管有一个带一个带,但cuprate奇怪的金属相仍有两个电荷扇区,一个含有相干的准粒子,另一个含量不变的“普朗克”散射器。
Strange metals possess highly unconventional transport characteristics, such as a linear-in-temperature ($T$) resistivity, an inverse Hall angle that varies as $T^2$ and a linear-in-field ($H$) magnetoresistance. Identifying the origin of these collective anomalies has proved profoundly challenging, even in materials such as the hole-doped cuprates that possess a simple band structure. The prevailing dogma is that strange metallicity in the cuprates is tied to a quantum critical point at a doping $p*$ inside the superconducting dome. Here, we study the high-field in-plane magnetoresistance of two superconducting cuprate families at doping levels beyond $p*$. At all dopings, the magnetoresistance exhibits quadrature scaling and becomes linear at high $H/T$ ratios. Moreover, its magnitude is found to be much larger than predicted by conventional theory and insensitive to both impurity scattering and magnetic field orientation. These observations, coupled with analysis of the zero-field and Hall resistivities, suggest that despite having a single band, the cuprate strange metal phase hosts two charge sectors, one containing coherent quasiparticles, the other scale-invariant `Planckian' dissipators.