arXiv · 1107.5480
Rotational Symmetry Breaking in the Hidden-Order Phase of URu2Si2
Abstract
A second-order phase transition is characterized by spontaneous symmetry breaking. The nature of the broken symmetry in the so-called "hidden order" phase transition in the heavy fermion compound URu2Si2, at transition temperature T_h=17.5 K, has posed a long-standing mystery. We report the emergence of an in-plane anisotropy of the magnetic susceptibility below T_h, which breaks the four-fold rotational symmetry of the tetragonal URu2Si2. Two-fold oscillations in the magnetic torque under in-plane field rotation were sensitively detected in small pure crystals. Our findings suggest that the hidden-order phase is an electronic "nematic" phase, a translationally invariant metallic phase with spontaneous breaking of rotational symmetry.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
R. Okazaki, T. Shibauchi, H. J. Shi, Y. Haga, T. D. Matsuda, E. Yamamoto, Y. Onuki, H. Ikeda, Y. Matsuda. 2011-07-27. Rotational Symmetry Breaking in the Hidden-Order Phase of URu2Si2. https://doi.org/10.1126/science.1197358
Cite the original work for its findings. Save a collection to share your selection of sources.