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Related Experiment Video

Updated: Sep 5, 2025

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Liquid crystal between two distributed Bragg reflectors enables multispectral small-pitch spatial light modulator.

Junghyun Park1, Kanghee Won2, Young Kim2

  • 1Advanced Sensor Lab, Device Research Center, Samsung Advanced Institute of Technology, Suwon, Republic of Korea. jhy.park@samsung.com.

Light, Science & Applications
|July 6, 2022
PubMed
Summary

Researchers are achieving precise control over light phases at the nanoscale. This breakthrough combines liquid crystals and distributed Bragg reflectors for advanced wavefront shaping applications.

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Area of Science:

  • Optics and Photonics
  • Materials Science

Background:

  • Precise control over the phase of light is crucial for advanced optical applications.
  • Subwavelength-scale phase manipulation offers a wide angle-range for wavefront shaping.

Purpose of the Study:

  • To explore the combination of conventional materials for enhanced light phase control.
  • To achieve wavefront shaping with a wide angle-range at the subwavelength scale.

Main Methods:

  • Integrating liquid crystal technology with distributed Bragg reflectors.
  • Investigating the optical properties of the combined material system.

Main Results:

  • Demonstrated feasibility of controlling light phase at the subwavelength scale.
  • Achieved a wide angle-range in wavefront shaping capabilities.

Conclusions:

  • The combination of liquid crystals and distributed Bragg reflectors is a promising approach for advanced optical control.
  • This research advances the goal of precise subwavelength light phase manipulation for future optical technologies.