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URu₂Si₂的声子热输运:平移对称性破缺与“隐藏序”与晶格的强耦合

Phonon thermal transport of URu2Si2: broken translational symmetry and strong-coupling of the "hidden order" to the lattice.

作者信息

Sharma P A, Harrison N, Jaime M, Oh Y S, Kim K H, Batista C D, Amitsuka H, Mydosh J A

机构信息

National High Magnetic Field Laboratory, Los Alamos National Laboratory, MS E536, Los Alamos, New Mexico 87545, USA.

出版信息

Phys Rev Lett. 2006 Oct 13;97(15):156401. doi: 10.1103/PhysRevLett.97.156401. Epub 2006 Oct 10.

Abstract

A dramatic increase in the total thermal conductivity (kappa) is observed in the hidden order (HO) state of single crystal URu2Si2. Through measurements of the thermal Hall conductivity, we explicitly show that the electronic contribution to kappa is extremely small, so that this large increase in kappa is dominated by phonon conduction. An itinerant BCS or mean-field model describes this behavior well: the increase in kappa is associated with the opening of a large energy gap at the Fermi surface, thereby decreasing electron-phonon scattering. Our analysis implies that the "hidden order" parameter is strongly coupled to the lattice, suggestive of a broken symmetry involving charge degrees of freedom.

摘要

在单晶URu2Si2的隐序(HO)状态下,观察到总热导率(kappa)急剧增加。通过对热霍尔电导率的测量,我们明确表明电子对kappa的贡献极小,因此kappa的这种大幅增加主要由声子传导主导。巡游BCS或平均场模型能很好地描述这种行为:kappa的增加与费米面处大的能隙打开有关,从而减少了电子 - 声子散射。我们的分析表明,“隐序”参数与晶格强烈耦合,这暗示了涉及电荷自由度的对称性破缺。

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