English

Visualizing the internal structure of the charge-density-wave state in CeSbTe

Mesoscale and Nanoscale Physics 2025-04-01 v2

Abstract

The collective reorganization of electrons into a charge density wave has long served as a textbook example of an ordered phase in condensed matter physics. Two-dimensional square lattices with pp electrons are well-suited to the realization of charge density waves, due to the anisotropy of the pp orbitals and the resulting one dimensionality of the electronic structure. In spite of a long history of study of charge density waves in square-lattice systems, few reports have recognized the significance of a hidden orbital degree of freedom. The degeneracy of pxp_x and pyp_y electrons may give rise to orbital patterns in real space that endow the charge density wave with additional broken symmetries or unusual order parameters. Here, we use scanning tunneling microscopy to visualize the internal structure of the charge-density-wave state of CeSbTe, which contains Sb square lattices with 5pp electrons. We image atomic-sized, anisotropic lobes of charge density with periodically modulating anisotropy, which we interpret in terms of a superposition of pxp_x and pyp_y bond density waves. Our results support the fact that delocalized pp orbitals can reorganize into emergent electronic states of matter.

Keywords

Cite

@article{arxiv.2408.07351,
  title  = {Visualizing the internal structure of the charge-density-wave state in CeSbTe},
  author = {Xinglu Que and Qingyu He and Lihui Zhou and Shiming Lei and Leslie Schoop and Dennis Huang and Hidenori Takagi},
  journal= {arXiv preprint arXiv:2408.07351},
  year   = {2025}
}

Comments

21 pages, 6 figures

R2 v1 2026-06-28T18:12:34.100Z