paper

Role of commensurate and incommensurate low-energy excitations in the paramagnetic to hidden-order transition of URuSi

arXiv:1110.5599 · doi:10.1103/PhysRevB.92.115116

Abstract

We report low-energy inelastic neutron scattering data of the paramagnetic (PM) to hidden-order (HO) phase transition at in URuSi. While confirming previous results for the HO and PM phases, our data reveal a pronounced wavevector dependence of low-energy excitations across the phase transition. To analyze the energy scans we employ a damped harmonic oscillator model containing a fit parameter which is expected to diverge at a second-order phase transition. Counter to expectations the excitations at show an abrupt step-like suppression of below , whereas excitations at , associated with large-moment antiferromagnetism (LMAF) under pressure, show an enhancement and a pronounced peak of at . Therefore, at the critical HO temperature , LMAF fluctuations become nearly critical as well. This is the behavior expected of a super-vector order parameter with nearly degenerate components for the HO and LMAF leading to nearly isotropic fluctuations in the combined order-parameter space.

6 pages; v3 accepted journal version; minor modifications compared to v2

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