English

Dimensionality-driven orthorhombic MoTe2 at room temperature

Materials Science 2018-01-19 v1

Abstract

We use a combination of Raman spectroscopy and transport measurements to study thin flakes of the type-II Weyl semimetal candidate MoTe2 protected from oxidation. In contrast to bulk crystals, which undergo a phase transition from monoclinic to the inversion symmetry breaking, orthorhombic phase below ~250 K, we find that in moderately thin samples below ~12 nm, a single orthorhombic phase exists up to and beyond room temperature. This could be due to the effect of c-axis confinement, which lowers the energy of an out-of-plane hole band and stabilizes the orthorhombic structure. Our results suggest that Weyl nodes, predicated upon inversion symmetry breaking, may be observed in thin MoTe2 at room temperature.

Keywords

Cite

@article{arxiv.1801.01217,
  title  = {Dimensionality-driven orthorhombic MoTe2 at room temperature},
  author = {Rui He and Shazhou Zhong and Hyun Ho Kim and Gaihua Ye and Zhipeng Ye and Logan Winford and Daniel McHaffie and Ivana Rilak and Fangchu Chen and Xuan Luo and Yuping Sun and Adam W. Tsen},
  journal= {arXiv preprint arXiv:1801.01217},
  year   = {2018}
}
R2 v1 2026-06-22T23:36:00.890Z