English

"Hard" crystalline lattice in the Weyl semimetal NbAs

Strongly Correlated Electrons 2016-01-15 v2 Materials Science Superconductivity

Abstract

We report the effect of hydrostatic pressure on the magnetotransport properties of the Weyl semimetal NbAs. Subtle changes can be seen in the ρxx(T)\rho_{xx}(T) profiles with pressure up to 2.31 GPa. The Fermi surfaces undergo an anisotropic evolution under pressure: the extremal areas slightly increase in the kx\mathbf{k_x}-ky\mathbf{k_y} plane, but decrease in the kz\mathbf{k_z}-ky\mathbf{k_y}(kx\mathbf{k_x}) plane. The topological features of the two pockets observed at atmospheric pressure, however, remain unchanged at 2.31 GPa. No superconductivity can be seen down to 0.3 K for all the pressures measured. By fitting the temperature dependence of specific heat to the Debye model, we obtain a small Sommerfeld coefficient γ0=\gamma_0= 0.09(1) mJ/(mol\cdotK2^2) and a large Debye temperature, ΘD=\Theta_D= 450(9) K, confirming a "hard" crystalline lattice that is stable under pressure. We also studied the Kadowaki-Woods ratio of this low-carrier-density massless system, RKW=R_{KW}= 3.2×104\times 10^4 μΩ\mu\Omega cm mol2^2 K2^2 J2^{-2}. After accounting for the small carrier density in NbAs, this RKWR_{KW} indicates a suppressed transport scattering rate relative to other metals.

Keywords

Cite

@article{arxiv.1510.08538,
  title  = {"Hard" crystalline lattice in the Weyl semimetal NbAs},
  author = {Yongkang Luo and N. J. Ghimire and E. D. Bauer and J. D. Thompson and F. Ronning},
  journal= {arXiv preprint arXiv:1510.08538},
  year   = {2016}
}

Comments

12 pages, 5 figures, 1 table