English

Magnetism and Peierls distortion in Dirac semimetal CaMnBi$_2$

Materials Science 2025-11-06 v1 Strongly Correlated Electrons

Abstract

Dirac semimetals of the form AAMnX2X_2 (A=A = alkaline-earth or divalent rare earth; X=X = Bi, Sb) host conducting square-net Dirac-electron layers of XX atoms interleaved with antiferromagnetic MnXX layers. In these materials, canted antiferromagnetism can break time-reversal symmetry (TRS) and produce a Weyl semimetallic state. CaMnBi2_2 was proposed to realize this behavior below T50T^{*}\sim 50 K, where anomalies in resistivity and optical conductivity were reported. We investigate single-crystal CaMnBi2_{2} using polarized and unpolarized neutron diffraction, x-ray diffraction, and density functional theory (DFT) calculations to elucidate the underlying crystal and magnetic structures. The results show that the observed anomalies do not originate from spin canting or weak ferromagnetism; no measurable uniform Mn spin canting is detected. Instead, CaMnBi2_2 undergoes a coupled structural and magnetic symmetry-lowering transition at T=46(2)T^{*} = 46(2) K, from a tetragonal lattice with C-type antiferromagnetism to an orthorhombic phase with unit-cell doubling along the cc axis and minimal impact on magnetism. Analysis of superlattice peak intensities and lattice distortion reveals a continuous second-order transition governed by a single order parameter. The refined atomic displacements correspond to a zigzag bond-order-wave (BOW) modulation of Bi-Bi bonds, consistent with an electronically driven Peierls-type instability in the Dirac-electron Bi layer, long anticipated by Hoffmann and co-workers [W.~Tremel and R.~Hoffmann, \textit{J. Am. Chem. Soc.} \textbf{109}, 124 (1987); G.~A.~Papoian and R.~Hoffmann, \textit{Angew. Chem. Int. Ed.} \textbf{39}, 2408 (2000)]. %\textcite{TremelHoffman_JACS1987} [JACS {\bf 109}, 124 (1987)].

Keywords

Cite

@article{arxiv.2511.03721,
  title  = {Magnetism and Peierls distortion in Dirac semimetal CaMnBi$_2$},
  author = {Aashish Sapkota and Niraj Aryal and Xiao Hu and Masaaki Matsuda and Yan Wu and Guangyong Xu and John M. Wilde and Andreas Kreyssig and Paul C. Canfield and Cedomir Petrovic and John M. Tranquada and Igor A. Zaliznyak},
  journal= {arXiv preprint arXiv:2511.03721},
  year   = {2025}
}

Comments

25 pages with 19 figures including appendices; 15 pages, 11 figs main text