English

Two-dimensional THz spectroscopy of nonlinear phononics in the topological insulator $\mathrm{MnBi}_2\mathrm{Te}_4$

Materials Science 2023-11-08 v1

Abstract

The interaction of a single-cycle THz electric field with the topological insulator MnBi2Te4\mathrm{MnBi}_2\mathrm{Te}_4 triggers strongly anharmonic lattice dynamics, promoting fully coherent energy transfer between the otherwise non-interacting Raman-active EgE_g and infrared (IR)-active EuE_u phononic modes. Two-dimensional (2D) THz spectroscopy combined with modeling based on the classical equations of motion and symmetry analysis reveals the multi-stage process underlying the excitation of the Raman-active EgE_g phonon. In this process, the THz electric field first prepares a coherent IR-active EuE_u phononic state and subsequently interacts with this state to efficiently excite the EgE_g phonon.

Keywords

Cite

@article{arxiv.2212.07532,
  title  = {Two-dimensional THz spectroscopy of nonlinear phononics in the topological insulator $\mathrm{MnBi}_2\mathrm{Te}_4$},
  author = {T. G. H. Blank and K. A. Grishunin and K. A. Zvezdin and N. T. Hai and J. C. Wu and S. -H. Su and J. -C. A. Huang and A. K. Zvezdin and A. V. Kimel},
  journal= {arXiv preprint arXiv:2212.07532},
  year   = {2023}
}

Comments

27 pages, 20 figures