Optical study of charge instability in CeRu2Al10 in comparison with CeOs2Al10 and CeFe2Al10
arXiv:1108.4815 · doi:10.1103/PhysRevB.84.165125
Abstract
The anisotropic electronic structure responsible for the antiferromagnetic transition in CeRuAl at the unusually high temperature of = 28 K was studied using optical conductivity spectra, Ce 3d X-ray photoemission spectra, and band calculation. It was found that the electronic structure in the plane is that of a Kondo semiconductor, whereas that along the b axis has a nesting below 32 K (slightly higher than ). These characteristics are the same as those of CeOsAl [S. Kimura {\it et al.}, Phys. Rev. Lett. 106, 056404 (2011).]. The - hybridization intensities between the conduction and electrons of CeRuAl and CeOsAl are weaker than that of CeFeAl, showing no magnetic ordering. These results suggest that the electronic structure with one-dimensional weak - hybridization along the b axis combined with two-dimensional strong hybridization in the plane causes charge-density wave (CDW) instability, and the CDW state then induces magnetic ordering.
8 pages, 7 figures