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March 22, 2026ACS Photonics0 citationsOpen Access

Band-Edge Lasing with Cone-Shaped Emission from Flexible Nanoporous Cholesteric Liquid Crystal Polymer Films: Realization of Wavelength Tunability and Beam-Steering Capability

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JLJa-Hon LinHHHsuan-Li HuangYYYu-Tong YangNational Taipei University of Technology

Key Points

  • To explore the capabilities of dye-refilled nanoporous cholesteric liquid crystal polymer films for band-edge lasing and beam steering.
  • Fabricated dye-refilled nanoporous cholesteric liquid crystal polymer films using dye-doped liquid crystals.
  • Conducted experiments to analyze lasing properties under varying curvature and excitation positions.
  • Measured shifts in lasing peak wavelength after different storage durations.
  • Achieved a circular polarization and conical emission pattern in band-edge lasing.
  • Observed a 30 nm blue shift in lasing peak wavelength after 6 days of ambient storage.
  • Demonstrated 8 nm red shift in wavelength with increased curvature, allowing for beam steering capabilities.
  • Attained a 105 nm shift in wavelength using gradient-pitch distributed films.

Abstract

Dye-refilled nanoporous cholesteric liquid crystal polymer (DR-NPCLCP) films, fabricated by washing and refilling with dye-doped liquid crystals (DD-LCs), have emerged as promising templates for next-generation laser applications. Nevertheless, realizing flexible band-edge lasers in these devices remains challenging due to the intrinsic fluidity of liquid crystals. Here, we generated band-edge lasing from a freestanding DR-NPCLCP film, which revealed a circular polarization and a conical emission pattern. The as-prepared DR-NPCLCP film exhibited a 30 nm blue shift in its lasing peak wavelength after 6 days of ambient storage and showed no further shift thereafter. Moreover, the DR-NPCLCP films demonstrated excellent mechanical flexibility, showing an 8 nm red shift with increasing curvature and enabling beam steering by varying the excitation position on the bent films. A spatially tunable lasing peak with a 105 nm wavelength shift was achieved in gradient-pitch distributed DR-NPCLCP films, highlighting their versatility for advanced photonic applications.

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Cite This Study

Lin et al. (2026) studied this question.

synapsesocial.com/papers/69bf86ecf665edcd009e8f9ahttps://doi.org/10.1021/acsphotonics.5c02843
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