Department of Physics, Kyoto University, Kyoto 606-8502, Japan.
Phys Rev Lett. 2012 Jul 20;109(3):036401. doi: 10.1103/PhysRevLett.109.036401. Epub 2012 Jul 16.
We report the first observation of cyclotron resonance in the hidden-order phase of ultraclean URu2Si2 crystals, which allows the full determination of angle-dependent electron-mass structure of the main Fermi-surface sheets. We find an anomalous splitting of the sharpest resonance line under in-plane magnetic-field rotation. This is most naturally explained by the domain formation, which breaks the fourfold rotational symmetry of the underlying tetragonal lattice. The results reveal the emergence of an in-plane mass anisotropy with hot spots along the [110] direction, which can account for the anisotropic in-plane magnetic susceptibility reported recently. This is consistent with the "nematic" Fermi liquid state, in which itinerant electrons have unidirectional correlations.
我们首次观察到超净 URu2Si2 晶体中的序参量隐藏相中的回旋共振,这使得主要费米面片的角依赖电子质量结构能够完全确定。我们发现,在面内磁场旋转下,最尖锐的共振线发生了异常分裂。这最自然地解释了畴的形成,畴的形成打破了基础四方晶格的四重旋转对称性。结果表明,出现了沿[110]方向的各向异性质量各向异性,热点可以解释最近报道的各向异性面内磁 susceptibility。这与“向列”费米液体状态一致,其中巡游电子具有单向关联。