Momentum-space structure of quasielastic spin fluctuations in Ce3Pd20Si6
arXiv:1410.0296 · doi:10.1103/PhysRevB.91.094412
Abstract
Among heavy-fermion metals, CePdSi is one of the heaviest-electron systems known to date. Here we used high-resolution neutron spectroscopy to observe low-energy magnetic scattering from a single crystal of this compound in the paramagnetic state. We investigated its temperature dependence and distribution in momentum space, which was not accessible in earlier measurements on polycrystalline samples. At low temperatures, a quasielastic magnetic response with a half-width Γ=0.1 meV persists with varying intensity all over the Brillouin zone. It forms a broad hump centered at the (111) scattering vector, surrounded by minima of intensity at (002), (220) and equivalent wave vectors. The momentum-space structure distinguishes this signal from a simple crystal-field excitation at 0.31 meV, suggested previously, and rather lets us ascribe it to short-range dynamical correlations between the neighboring Ce ions, mediated by the itinerant heavy f-electrons via the RKKY mechanism. With increasing temperature, the energy width of the signal follows the conventional T law, Γ(T) = Γ + A*T. The momentum-space symmetry of the quasielastic response suggests that it stems from the simple-cubic Ce sublattice occupying the 8c Wyckoff site, whereas the crystallographically inequivalent 4a site remains magnetically silent in this material.
5 pages, 4 figures
References in corpus (6)
- Magnetically driven superconductivity in CeCu2Si2
- Symmetry of spin excitation spectra in the tetragonal paramagnetic and superconducting phases of 122-ferropnictides
- Electronic structure and nesting-driven enhancement of the RKKY interaction at the magnetic ordering propagation vector in Gd2PdSi3 and Tb2PdSi3
- Kondo lattices with inequivalent local moments: Competitive vs. co-operative Kondo screening
- Spin Exciton Formation inside the Hidden Order Phase of CeB6
- Ordered Phases and Quantum Criticality in Cubic Heavy Fermion Compounds