English

Multi-gap nodeless superconductivity in nickel chalcogenide TlNi2Se2

Superconductivity 2015-06-22 v1 Strongly Correlated Electrons

Abstract

Low-temperature thermal conductivity measurements were performed on single crystals of TlNi2_2Se2_2, a nickel-chalcogenide heavy-electron superconductor with TcT_c \simeq 3.7 K. In zero field, the residual electronic contribution at TT \rightarrow 0 K (κ0/T\kappa_0/T) was well separated from the total thermal conductivity, which is less than 0.45\% of its normal-state value. Such a tiny residual κ0/T\kappa_0/T is unlikely contributed by the nodal quasiparticles. Nodeless gap structure is supported by the very weak field dependence of κ0(H)/T\kappa_0(H)/T in low magnetic fields. In the whole field range, κ0(H)/T\kappa_0(H)/T exhibits an "SS"-shape curve, as in the case of nickel pnictides BaNi2_2As2_2 and SrNi2_2P2_2. This common feature of nickel-based superconductors can be explained by multiple nodeless superconducting gaps.

Keywords

Cite

@article{arxiv.1407.7175,
  title  = {Multi-gap nodeless superconductivity in nickel chalcogenide TlNi2Se2},
  author = {X. C. Hong and Z. Zhang and S. Y. Zhou and J. Pan and Y. Xu and Hangdong Wang and Qianhui Mao and Minghu Fang and J. K. Dong and S. Y. Li},
  journal= {arXiv preprint arXiv:1407.7175},
  year   = {2015}
}

Comments

5 pages, 3 figures

R2 v1 2026-06-22T05:14:03.671Z