论文标题

Wiedemann-Franz法律中的掺杂的Mott绝缘子无准颗粒

The Wiedemann-Franz law in doped Mott insulators without quasiparticles

论文作者

Wang, Wen O., Ding, Jixun K., Schattner, Yoni, Huang, Edwin W., Moritz, Brian, Devereaux, Thomas P.

论文摘要

许多金属量子材料都表现出异常的传输现象,违反了费米液体描述。在这里,我们使用数值方法来计算掺杂的哈伯德模型中的热和电荷传输,并观察到分隔高和低温行为的交叉。与高温下的行为不同,洛伦兹数量$ l $变得微弱兴奋剂,并且对低温下的参数敏感。在最低的数值访问温度下,$ l $粗略接近Wiedemann-Franz常数$ L_0 $,即使在缺少定义明确的准粒子的掺杂的Mott绝缘子中。分解能量电流运算符表示动力学和潜在贡献之间的补偿,这可能有助于阐明在强相关金属中玻尔兹曼理论之外的运输实验的解释。

Many metallic quantum materials display anomalous transport phenomena that defy a Fermi liquid description. Here, we use numerical methods to calculate thermal and charge transport in the doped Hubbard model and observe a cross-over separating high- and low-temperature behaviors. Distinct from the behavior at high temperatures, the Lorenz number $L$ becomes weakly doping dependent and less sensitive to parameters at low temperatures. At the lowest numerically accessible temperatures, $L$ roughly approaches the Wiedemann-Franz constant $L_0$, even in a doped Mott insulator that lacks well-defined quasiparticles. Decomposing the energy current operator indicates a compensation between kinetic and potential contributions, which may help to clarify the interpretation of transport experiments beyond Boltzmann theory in strongly correlated metals.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源