English

Strong nonlinear optical response and transient symmetry switching in Type-II Weyl semimetal $\beta$-WP2

Materials Science 2023-04-11 v1

Abstract

The topological Weyl semimetals with peculiar band structure exhibit novel nonlinear optical enhancement phenomena even for light at optical wavelengths. While many intriguing nonlinear optical effects were constantly uncovered in type-I semimetals, few experimental works focused on basic nonlinear optical properties in type-II Weyl semimetals. Here we perform a fundamental static and time-resolved second harmonic generation (SHG) on the three dimensional Type-II Weyl semimetal candidate β\beta-WP2_2. Although β\beta-WP2_2 exhibits extremely high conductivity and an extraordinarily large mean free path, the second harmonic generation is unscreened by conduction electrons, we observed rather strong SHG response compared to non-topological polar metals and archetypal ferroelectric insulators. Additionally, our time-resolved SHG experiment traces ultrafast symmetry switching and reveals that polar metal β\beta-WP2_2 tends to form inversion symmetric metastable state after photo-excitation. Intense femtosecond laser pulse could optically drive symmetry switching and tune nonlinear optical response on ultrafast timescales although the interlayer coupling of β\beta-WP2_2 is very strong. Our work is illuminating for the polar metal nonlinear optics and potential ultrafast topological optoelectronic applications.

Keywords

Cite

@article{arxiv.2208.08923,
  title  = {Strong nonlinear optical response and transient symmetry switching in Type-II Weyl semimetal $\beta$-WP2},
  author = {Tianchen Hu and Bo Su and Liyu Shi and Zixiao Wang and Li Yue and Shuxiang Xu and Sijie Zhang and Qiaomei Liu and Qiong Wu and Rongsheng Li and Xinyu Zhou and Jiayu Yuan and Dong Wu and Zhiguo Chen and Tao Dong and Nanlin Wang},
  journal= {arXiv preprint arXiv:2208.08923},
  year   = {2023}
}

Comments

8 pages, 5 figures