Symmetry of the Hidden Order in URu2Si2 from Nuclear Magnetic Resonance Studies
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概要
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The hidden order (HO) in URu2Si2 has been investigated by both 29Si and 99Ru NMR on a single crystal. Tiny, but finite additional broadening of the spectrum in the HO phase in both 29Si and 99Ru NMR with external magnetic field applied along the crystallographic [100] or [110] direction, and its persistence as H_{\text{ext}}\rightarrow 0 in 29Si NMR clearly indicate the existence of internal hyperfine field, and the breaking of the time-reversal symmetry in the HO phase can therefore be concluded. We discuss which symmetry of the D_{4h} symmetry group of the URu2Si2 crystal structure is compatible with the observed dependence on the crystal-axis direction of the existence or nonexistence of the internal hyperfine field. Then, by imposing a strong constraint that the wave-vector of the HO is also \mbi{Q}_{0}=[0,0,1], the wave-vector of the pressure-induced antiferromagnetism, we show that the two-dimensional representation E^{-} remains as the only possible candidate for the HO symmetry. Since dipoles are obviously excluded from the major HO parameter, we conclude the E^{-} multipole (octupole or triakontadipole) to be the HO parameter. We further discuss that the E^{-} multipole, but with no associated dipoles, seems to be a key feature of the HO in URu2Si2.
- 2012-11-15
著者
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Yokoyama Makoto
Faculty Of Science Ibaraki University
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Takagi Shigeru
Physics Department Graduate School Of Science Tohoku University
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Amitsuka Hiroshi
Department Of Physics Faculty Of Science Hokkaido University
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Ishihara Shu
Physics Department Graduate School Of Science Tohoku University
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Amitsuka Hiroshi
Department of Physics, Graduate School of Science, Hokkaido University, Sapporo 060-0810, Japan
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Ishihara Shu
Physics Department, Graduate School of Science, Tohoku University, Sendai 980-8578, Japan
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