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Polarization-Independent Second Harmonic Generation in 2D Van Der Waals Kagome Nb 3 SeI 7 Crystals.

Yuqiang FangXin FengDong WangYang DingTianquan LinTianyou ZhaiFuqiang Huang
Published in: Small (Weinheim an der Bergstrasse, Germany) (2023)
Second harmonic generation (SHG) of 2D crystals has been of great interest due to its advantages of phase-matching and easy integration into nanophotonic devices. However, the polarization-dependence character of the SHG signal makes it highly troublesome but necessary to match the laser polarization orientation relative to the crystal, thus achieving the maximum polarized SHG intensity. Here, it is demonstrated a polarization-independent SHG, for the first time, in the van der Waals Nb 3 SeI 7 crystals with a breathing Kagome lattice. The Nb 3 triangular clusters and Janus-structure of each Nb 3 SeI 7 layer are confirmed by the STEM. Nb 3 SeI 7 flake shows a strong SHG response due to its noncentrosymmetric crystal structure. More interestingly, the SHG signals of Nb 3 SeI 7 are independent of the polarization of the excitation light owing to the in-plane isotropic arrangement of nonlinear active units. This work provides the first layered nonlinear optical crystal with the polarization-independent SHG effect, providing new possibilities for nonlinear optics.
Keyphrases
  • crystal structure
  • room temperature
  • high resolution
  • high intensity
  • ion batteries