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Spin-liquid signatures in the quantum critical regime of pressurized CePdAl

Strongly Correlated Electrons 2022-06-01 v2

Abstract

CePdAl is a prototypical frustrated Kondo lattice with partial long-range order (LRO) at TN=2.7T_\mathrm{N}=2.7 K. Previous bulk experiments under hydrostatic pressure found signatures for a quantum critical regime that extends from pc0.9p_\mathrm{c} \approx 0.9 GPa, where LRO disappears, up to 1.7\sim 1.7 GPa. We employed extensive muon spin relaxation and rotation (μ\muSR) experiments under pressure. The continuous and complete suppression of LRO at pcp_\mathrm{c} is confirmed. Above TN(p)T_\mathrm{N}(p) and beyond pcp_\mathrm{c}, an additional crossover scale T(p)T^\ast(p) characterizes the change from pure to stretched exponential relaxation in zero field. Remarkably T(p)T^\ast(p) agrees with previously determined signatures of entropy accumulation above LRO. This coincidence microscopically evidences fluctuating frustrated spins at TTT\leq T^\ast with spin-liquid behavior. Power-law divergences of the temperature and longitudinal field dependences of the relaxation rate, with time-field scaling, at pressures between pcp_c and 1.7 GPa characterize this regime as quantum critical.

Keywords

Cite

@article{arxiv.2202.11975,
  title  = {Spin-liquid signatures in the quantum critical regime of pressurized CePdAl},
  author = {M. Majumder and R. Gupta and H. Luetkens and R. Khasanov and O. Stockert and P. Gegenwart and V. Fritsch},
  journal= {arXiv preprint arXiv:2202.11975},
  year   = {2022}
}

Comments

5 pages, 4 figures and supplemental material (3 pages, 4 figures)