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A solution-processable natural crystal with giant optical anisotropy for efficient manipulation of light polarization

  • Yang Zhou,
  • Zhengfeng Guo,
  • Honggang Gu,
  • Yanqiang Li,
  • Yipeng Song,
  • Shiyuan Liu,
  • Maochun Hong,
  • Sangen Zhao,
  • Junhua Luo

摘要

Optical anisotropy, a spatially asymmetric light–matter interaction that manifests itself as birefringence and dichroism, is paramount for manipulating light polarization in modern optics. So far, various natural birefringent crystals are widely used, but their birefringence is limited to <0.3. Here we demonstrate a solution-processable natural crystal C3H8N6I6·3H2O with giant birefringence up to 2.8 within the visible to infrared spectral region. Combining critical point analysis and the first-principles calculations, we reveal that this giant optical anisotropy mainly comes from the linear (I3) structural units in a parallel arrangement, which maximizes the difference of polarizability along the different crystallographic axes. This work highlights the potential of natural polyiodide crystals as an outstanding platform to satisfy the increasing demand for photonic applications that exploit polarization in optical communication, three-dimensional imaging, ultrahigh-resolution sensing and other tasks.