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Translational Symmetry Breaking and Gapping of Heavy-Quasiparticle Pocket in URu2Si2

机译:URu2Si2中重拟粒子口袋的平移对称性断裂和缺口

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摘要

URu2Si2 is a uranium compound that exhibits a so-called ‘hidden-order’ transition at ~17.5 K. However, the order parameter of this second-order transition as well as many of its microscopic properties remain unclarified despite considerable research. One of the key questions in this regard concerns the type of spontaneous symmetry breaking occurring at the transition; although rotational symmetry breaking has been detected, it is not clear whether another type of symmetry breaking also occurs. Another key question concerns the property of Fermi-surface gapping in the momentum space. Here we address these key questions by a momentum-dependent observation of electronic states at the transition employing ultrahigh-resolution three-dimensional angle-resolved photoemission spectroscopy. Our results provide compelling evidence of the spontaneous breaking of the lattice's translational symmetry and particle-hole asymmetric gapping of a heavy quasiparticle pocket at the transition.
机译:URu2Si2是一种铀化合物,在〜17.5 K处表现出所谓的“隐式”跃迁。然而,尽管进行了大量研究,但该二阶跃迁的阶跃参数及其许多微观性质仍然不清楚。这方面的关键问题之一是过渡时发生的自发对称断裂类型。尽管已经检测到旋转对称破坏,但是还不清楚是否还会发生另一种类型的对称破坏。另一个关键问题涉及动量空间中费米表面间隙的性质。在这里,我们通过使用超高分辨率三维角分辨光发射光谱学对跃迁中的电子态进行依赖于动量的观察来解决这些关键问题。我们的结果提供了令人信服的证据,证明了晶格的平移对称性自发破裂以及过渡时沉重的准粒子袋的粒子-孔不对称间隙。

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