Collective infrared excitation in rare-earth GdLaB hexaborides
arXiv:1811.00104 · doi:10.1103/PhysRevB.100.104302
Abstract
Using Fourier-transform infrared spectroscopy and optical ellipsometry, room temperature spectra of complex conductivity of single crystals of hexaborides GdLaB, (Gd), 0.01, 0.1, 0.78, 1 are determined in the frequency range 3035000. In all compounds, in addition to the Drude free-carrier spectral component, a broad excitation is discovered with the unusually large dielectric contribution =5000 -- 15000 and non-Lorentzian lineshape. It is suggested that the origin of the excitation is connected with the dynamic cooperative Jahn-Teller effect of B clusters. Analysis of the spectra together with the results of DC and Hall resistivity measurements shows that only 3050 of the conduction band electrons are contributing to the free carrier conductivity with the rest being involved in the formation of an overdamped excitation, thus providing possible explanation of remarkably low work function of thermoemission of GdLaB and non-Fermi-liquid behavior in GdB crystals.
7 pages, 5 figures, 1 table