English

Disorder- and Topology-Enhanced Fully Spin-Polarized Currents in Nodal Chain Spin-Gapless Semimetals

Mesoscale and Nanoscale Physics 2022-08-25 v2 Materials Science

Abstract

Recently discovered high-quality nodal chain spin-gapless semimetals MMF3_3 (MM = Pd, Mn) feature an ultra-clean nodal chain in the spin up channel residing right at the Fermi level and displaying a large spin gap leading to a 100\% spin-polarization of transport properties. Here, we investigate both intrinsic and extrinsic contributions to anomalous and spin transport in this class of materials. The dominant intrinsic origin is found to originate entirely from the gapped nodal chains without the entanglement of any other trivial bands. The side-jump mechanism is predicted to be negligibly small, but intrinsic skew-scattering enhances the intrinsic Hall and Nernst signals significantly, leading to large values of respective conductivities. Our findings open a new material platform for exploring strong anomalous and spin transport properties in magnetic topological semimetals.

Keywords

Cite

@article{arxiv.2111.03206,
  title  = {Disorder- and Topology-Enhanced Fully Spin-Polarized Currents in Nodal Chain Spin-Gapless Semimetals},
  author = {Xiaodong Zhou and Run-Wu Zhang and Xiuxian Yang and Xiao-Ping Li and Wanxiang Feng and Yuriy Mokrousov and Yugui Yao},
  journal= {arXiv preprint arXiv:2111.03206},
  year   = {2022}
}

Comments

7 pages, 4 figures