English

Tomonaga-Luttinger liquid and charge-density wave in a quasi-one-dimensional material

Strongly Correlated Electrons 2026-03-31 v1 Mesoscale and Nanoscale Physics Materials Science

Abstract

In one-dimensional (1D) electron systems, the Fermi liquid state breaks down due either to electron interactions, which results in a Tomonaga-Luttinger liquid (TLL) state, or to Peierls instability, which leads to an insulating charge-density-wave (CDW) phase. In general, these two phenomena are mutually exclusive, and their coexistence remains elusive in real materials. Here, we report the discovery of a new quasi-1D material, Cs1δ_{1-\delta}Cr3_3S3_3, which unexpectedly exhibits coexistence of the antithetical CDW and TLL states. The CDW state is evidenced by the intra-unit-cell dimerization, and the opening of an optical band gap of \sim250 meV. Meanwhile, TLL behaviour is unambiguously demonstrated by the measurements of electrical transport and angle-resolved photoemission spectroscopy, which reveal a power-law scaling with temperature, bias voltage and electron energy. Band structure calculations reveal isolated, linearly dispersive, 1D bands around the Fermi level. For the dimerized CDW phase, the 1D Fermi-surface sheets located at the boundary of the Brillouin zone are gapped from intra-unit-cell bond symmetry breaking. Experimentally, subtle Cs vacancies shift the Fermi level into the linearly dispersive valence band, enabling the observation of TLL behaviour without interrupting the CDW order. This work establishes Cs1δ_{1-\delta}Cr3_3S3_3 as a rare material platform in which the antagonistic Fermi-liquid instabilities coexist and intertwine, opening new avenues for studying emergent quantum phenomena in 1D systems.

Keywords

Cite

@article{arxiv.2603.28186,
  title  = {Tomonaga-Luttinger liquid and charge-density wave in a quasi-one-dimensional material},
  author = {Jing Li and Guo-Wei Yang and Bai-Zhuo Li and Yi Liu and Si-Qi Wu and Ji-Yong Liu and Jin-Ke Bao and Xiaoxian Yan and Hua-Xun Li and Jia-Xin Li and Jia-Lu Wang and Yun-Lei Sun and Yi-Ming Lu and Jia-Yi Lu and Yi-Qiang Lin and Hui Xing and Chao Cao and Hao Jiang and Yang Liu and Guang-Han Cao and Hai-Qing Lin},
  journal= {arXiv preprint arXiv:2603.28186},
  year   = {2026}
}

Comments

32 pages, 13 figures, 5 tables