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Area of Science:

  • Photonics and Renewable Energy

Background:

  • Multidisciplinary technologies are driving industrial efficiency, particularly in renewable energy.
  • Solar energy systems often rely on tracking devices, which can be complex and costly.

Purpose of the Study:

  • To develop and characterize a multiplexed holographic device for solar energy applications.
  • To eliminate the need for solar tracking systems by utilizing holographic properties.

Main Methods:

  • Manufacturing multiplexed holograms using commercial Bayfol® HX121 photopolymer.
  • Characterizing holographic devices for acceptance angle and diffraction efficiency.

Main Results:

  • Achieved low-frequency holograms (478 lines/mm) with a 43° acceptance angle.
  • Demonstrated that three devices enable a 129° angular sweep without tracking.
  • High performance and industrial scalability were facilitated.

Conclusions:

  • Multiplexed holographic devices offer a viable solution for efficient solar energy capture without tracking.
  • This innovation can significantly improve the efficiency and reduce the complexity of solar energy systems.