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February 22, 2026Bulletin of the Russian Academy of Sciences Physics0 citations

Polarization Holographic Monitoring for Laser Treatment Diffractive Optical Elements and Metasurfaces Fabrication in Functional Materials Photonics

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TRT. V. ReztsovACA. V. ChernykhAEA. S. Ezerskii

Key Points

  • The aim is to characterize laser-fabricated and self-assembled optical elements using a polarization holographic microscope.
  • Utilized a custom-built polarization holographic microscope to gather optical data.
  • Analyzed silver-doped zinc oxide sol-gel films structured by femtosecond laser writing.
  • Explored self-assembled torons in chiral nematic liquid crystals.
  • Reconstructed the full Jones matrix to obtain amplitude, phase, and polarization data.
  • Laser writing induced programmable dichroism and birefringence in ZnO:Ag films.
  • Observed distinct phase shifts between orthogonal Jones matrix components at different wavelengths.
  • Analyzed complex ring structures and light intensity distributions of torons in liquid crystals.
  • Confirmed the effectiveness of torons in generating optical functions, including vortex generation.

Abstract

We demonstrate the application of a custom-built polarization holographic microscope (PHM) for comprehensive characterization of laser-fabricated and self-assembled optical elements. We investigate two distinct material platforms: silver-doped zinc oxide (ZnO:Ag) sol–gel films structured by femtosecond direct laser writing, and self-assembled torons, namely soft topological solitons, in chiral nematic liquid crystals (LCs). The PHM enables single-shot, multi-wavelength (450, 532, 660 nm) reconstruction of the full Jones matrix, providing complete amplitude, phase, and polarization information. For ZnO:Ag films, we show that laser writing induces programmable dichroism and birefringence, characterized by a spectrally dependent phase shift (e.g., +π/4 at 450 nm and –π/8 at 660 nm between orthogonal Jones matrix components), establishing a foundation for all-dielectric metasurfaces. For torons, PHM analysis of torons in 25 µm LC cells reveals complex ring structure of the corresponding phase and light intensity distributions and confirms the robustness of their optical functions (e.g., vortex generation) across the visible spectrum.

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Cite This Study

Reztsov et al. (2025) studied this question.

synapsesocial.com/papers/699a9cc6482488d673cd27a6https://doi.org/10.1134/s1062873825714898
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