Lattice dynamics of the heavy fermion compound URuSi
arXiv:1410.3101 · doi:10.1103/PhysRevB.91.035129
Abstract
We report a comprehensive investigation of the lattice dynamics of URuSi as a function of temperature using Raman scattering, optical conductivity and inelastic neutron scattering measurements as well as theoretical {\it ab initio} calculations. The main effects on the optical phonon modes are related to Kondo physics. The B ( symmetry) phonon mode slightly softens below 100~K, in connection with the previously reported softening of the elastic constant, , of the same symmetry, both observations suggesting a B symmetry-breaking instability in the Kondo regime. Through optical conductivity, we detect clear signatures of strong electron-phonon coupling, with temperature dependent spectral weight and Fano line shape of some phonon modes. Surprisingly, the line shapes of two phonon modes, E(1) and A(2), show opposite temperature dependencies. The A(2) mode loses its Fano shape below 150 K, whereas the E(1) mode acquires it below 100~K, in the Kondo cross-over regime. This may point out to momentum-dependent Kondo physics. By inelastic neutron scattering measurements, we have drawn the full dispersion of the phonon modes between 300~K and 2~K. No remarkable temperature dependence has been obtained including through the hidden order transition. {\it Ab initio} calculations with the spin-orbit coupling are in good agreement with the data except for a few low energy branches with propagation in the (a,b) plane.
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Cited by in corpus (6)
- Chirality density wave of the 'hidden order' phase in URuSi
- Hidden order and beyond: an experimental-theoretical overview of the multifaceted behavior of URuSi
- Detailed optical spectroscopy of the hybridization gap and the hidden order transition in high quality URuSi single crystals
- Electronic properties of a heavy-fermion U(Ru0.92Rh0.08)2Si2 single crystal
- Raman Active High Energy Excitations in URuSi
- Fingerprints for anisotropic Kondo lattice behavior in the quasiparticle dynamics of the kagome metal NiIn