English

Temperature-driven Topological Phase Transition and Intermediate Dirac Semimetal Phase in ZrTe$_5$

Materials Science 2018-11-05 v1 Strongly Correlated Electrons

Abstract

We present an infrared spectroscopy study of ZrTe5_5, which confirms a recent theoretical proposal that this material exhibits a temperature-driven topological quantum phase transition from a weak to a strong topological insulating state with an intermediate Dirac semimetal state around TpT_p \simeq 138K. Our study details the temperature evolution of the energy gap in the bulk electronic structure. We found that the energy gap closes around TpT_p where the optical response exhibits characteristic signatures of a Dirac semimetal state, i.e. a linear frequency-dependent optical conductivity extrapolating to the origin (after subtracting a weak Drude response). This finding allows us to reconcile previous diverging reports about the topological nature of ZrTe5_5 in terms of a variation of TpT_p that depends on the crystal growth condition.

Keywords

Cite

@article{arxiv.1811.00772,
  title  = {Temperature-driven Topological Phase Transition and Intermediate Dirac Semimetal Phase in ZrTe$_5$},
  author = {B. Xu and L. X. Zhao and P. Marsik and E. Sheveleva and F. Lyzwa and Y. M. Dai and G. F. Chen and X. G. Qiu and C. Bernhard},
  journal= {arXiv preprint arXiv:1811.00772},
  year   = {2018}
}

Comments

6 pages 3 figures