New Quantum Criticality Revealed under Pressure
Abstract
Unconventional quantum critical phenomena observed in Yb-based periodic crystals such as YbRhSi and -YbAlB have been one of the central issues in strongly correlated electron systems. The common criticality has been discovered in quasicrystal YbAuAl, which surprisingly persists under pressure at least up to GPa. The scaling where the magnetic susceptibility can be expressed as a single scaling function of the ratio of temperature and magnetic field has been discovered in the quasicrystal, which is essentially the same as that observed in -YbAlB. Recently, the scaling as well as the common criticality has been also observed even in the approximant crystal YbAuAl under pressure. The theory of critical Yb-valence fluctuation gives a natural explanation for these striking phenomena in a unified way.
Keywords
Cite
@article{arxiv.1701.02432,
title = {New Quantum Criticality Revealed under Pressure},
author = {Shinji Watanabe and Kazumasa Miyake},
journal= {arXiv preprint arXiv:1701.02432},
year = {2017}
}
Comments
17 pages, 5 figures, Invited review paper in the 17th International Conference on High Pressure in Semiconductor Physics (HPSP-17) & Workshop on High-pressure Study on Superconducting (WHS)