English

Low-temperature transport properties of intermetallic compound HoAgGe with kagome spin ice state

Materials Science 2022-08-10 v1

Abstract

We study the magnetic susceptibility, magnetization, resistivity and thermal conductivity of intermetallic HoAgGe single crystals at low temperatures and in magnetic fields along the aa and cc axis, while the electric and heat currents are along the cc axis. The magnetization curves show a series of metamagnetic transitions and small hysteresis at low field for BaB \parallel a, and a weak metamagnetic transition for BcB \parallel c, respectively. Both the magnetic susceptibility and ρ(T)\rho(T) curve show anomalies at the antiferromagnetic transition (TNT\rm_N \sim 11.3 K) and spin reorientation transition (\sim 7 K). In zero field and at very low temperatures, the electrons are found to be the main heat carriers. For BaB \parallel a, the ρ(B)\rho(B) curves display large and positive transverse magnetoresistance (MR) with extraordinary field dependence between B2B^2 and BB-linear, accompanied with anomalies at the metamagnetic transitions and low-field hysteresis; meanwhile, the κ(B)\kappa(B) mainly decrease with increasing field and display some anomalies at the metamagnetic transitions. For BcB \parallel c, there is weak and negative longitudinal MR while the κ(B)\kappa(B) show rather strong field dependence, indicating the role of phonon heat transport.

Keywords

Cite

@article{arxiv.2207.12311,
  title  = {Low-temperature transport properties of intermetallic compound HoAgGe with kagome spin ice state},
  author = {N. Li and Q. Huang and X. Y. Yue and S. K. Guang and K. Xia and Y. Y. Wang and Q. J. Li and X. Zhao and H. D. Zhou and X. F. Sun},
  journal= {arXiv preprint arXiv:2207.12311},
  year   = {2022}
}

Comments

8 pages, 8 figures