A detailed low-energy electronic structure of a Kondo insulator YbB12 was revealed by a synergetic combination of ultrahigh-resolution laser photoemission spectroscopy (PES) and time-resolved PES. The former confirmed a 25-meV pseudogap corresponding to the Kondo temperature of this material, and more importantly, it revealed that a 15-meV gap and a Kondo-peak feature developed below a crossover temperature T∗∼110 K. In harmony with this, the latter discovered a very long recombination time exceeding 100 ps below ∼T∗. This is a clear manifestation of photoexcited carriers due to the bottleneck in the recovery dynamics, which is interpreted as a developing hybridization gap of a hard gap.
@article{arxiv.1407.0578,
title = {Hybridization gap formation in the Kondo insulator YbB$_{12}$ observed using time-resolved photoemission spectroscopy},
author = {M. Okawa and Y. Ishida and M. Takahashi and T. Shimada and F. Iga and T. Takabatake and T. Saitoh and S. Shin},
journal= {arXiv preprint arXiv:1407.0578},
year = {2015}
}
Comments
6 pages, 4 figures, revised version accepted for publication in PRB Rapid Communications