English

New Quantum Criticality Revealed under Pressure

Strongly Correlated Electrons 2017-03-14 v2

Abstract

Unconventional quantum critical phenomena observed in Yb-based periodic crystals such as YbRh2_2Si2_2 and β\beta-YbAlB4_4 have been one of the central issues in strongly correlated electron systems. The common criticality has been discovered in quasicrystal Yb15_{15}Au51_{51}Al34_{34}, which surprisingly persists under pressure at least up to P=1.5P=1.5 GPa. The T/HT/H scaling where the magnetic susceptibility can be expressed as a single scaling function of the ratio of temperature TT and magnetic field HH has been discovered in the quasicrystal, which is essentially the same as that observed in β\beta-YbAlB4_4. Recently, the T/HT/H scaling as well as the common criticality has been also observed even in the approximant crystal Yb14_{14}Au51_{51}Al35_{35} 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)

R2 v1 2026-06-22T17:45:32.727Z