Selective Couplers Based on Multiplexed Volume Holographic Gratings for Waveguide Displays

Diffraction waveguides are widely used in augmented reality devices as information display systems for the introduction of data into the human visual field in order to supplement information about the world around us. This paper formulates the principles of radiation conversion in diffraction wavegu...

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Main Authors: Maria Shishova, Alexander Zherdev, Sergey Odinokov, Vladimir Venediktov, Dmitrii Lushnikov, Yohan Kim
Format: Article
Language:English
Published: MDPI AG 2021-06-01
Series:Photonics
Subjects:
Online Access:https://www.mdpi.com/2304-6732/8/7/232
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spelling doaj-e2520eefe7d2425e85a53257f97d0f172021-07-23T14:00:58ZengMDPI AGPhotonics2304-67322021-06-01823223210.3390/photonics8070232Selective Couplers Based on Multiplexed Volume Holographic Gratings for Waveguide DisplaysMaria Shishova0Alexander Zherdev1Sergey Odinokov2Vladimir Venediktov3Dmitrii Lushnikov4Yohan Kim5Laser and Optoelectronic Systems Department, Bauman State Technical University, 105005 Moscow, RussiaLaser and Optoelectronic Systems Department, Bauman State Technical University, 105005 Moscow, RussiaLaser and Optoelectronic Systems Department, Bauman State Technical University, 105005 Moscow, RussiaLaser Measurement and Navigation Systems Department, St. Petersburg State Electrotechnical University LETI, 197376 Saint Petersburg, RussiaLaser and Optoelectronic Systems Department, Bauman State Technical University, 105005 Moscow, RussiaLaser and Optoelectronic Systems Department, Bauman State Technical University, 105005 Moscow, RussiaDiffraction waveguides are widely used in augmented reality devices as information display systems for the introduction of data into the human visual field in order to supplement information about the world around us. This paper formulates the principles of radiation conversion in diffraction waveguides made of photo-thermo-refractive glass on the basis of multiplexed volume holographic gratings, and the advantages and disadvantages of high spectral-angular selectivity are analyzed. In the optical scheme, each of the superimposed volume holographic gratings in the diffraction waveguide forms a corresponding part of the composite angular field of view of the augmented reality device. A proposed mathematical model based on angular multiplexing made it possible to synthesize the diffraction optical element for a new type of diffraction waveguide made from photo-thermo-refractive glass and to create a prototype with an angular resolution of at least 3.0 ± 0.5′, with a brightness change in the image of less than 20% and with a composite angular field of view of 32°.https://www.mdpi.com/2304-6732/8/7/232Bragg gratingsholographic replicationdiffraction waveguidesnear-eye displaymultiplex holographywaveguide display
collection DOAJ
language English
format Article
sources DOAJ
author Maria Shishova
Alexander Zherdev
Sergey Odinokov
Vladimir Venediktov
Dmitrii Lushnikov
Yohan Kim
spellingShingle Maria Shishova
Alexander Zherdev
Sergey Odinokov
Vladimir Venediktov
Dmitrii Lushnikov
Yohan Kim
Selective Couplers Based on Multiplexed Volume Holographic Gratings for Waveguide Displays
Photonics
Bragg gratings
holographic replication
diffraction waveguides
near-eye display
multiplex holography
waveguide display
author_facet Maria Shishova
Alexander Zherdev
Sergey Odinokov
Vladimir Venediktov
Dmitrii Lushnikov
Yohan Kim
author_sort Maria Shishova
title Selective Couplers Based on Multiplexed Volume Holographic Gratings for Waveguide Displays
title_short Selective Couplers Based on Multiplexed Volume Holographic Gratings for Waveguide Displays
title_full Selective Couplers Based on Multiplexed Volume Holographic Gratings for Waveguide Displays
title_fullStr Selective Couplers Based on Multiplexed Volume Holographic Gratings for Waveguide Displays
title_full_unstemmed Selective Couplers Based on Multiplexed Volume Holographic Gratings for Waveguide Displays
title_sort selective couplers based on multiplexed volume holographic gratings for waveguide displays
publisher MDPI AG
series Photonics
issn 2304-6732
publishDate 2021-06-01
description Diffraction waveguides are widely used in augmented reality devices as information display systems for the introduction of data into the human visual field in order to supplement information about the world around us. This paper formulates the principles of radiation conversion in diffraction waveguides made of photo-thermo-refractive glass on the basis of multiplexed volume holographic gratings, and the advantages and disadvantages of high spectral-angular selectivity are analyzed. In the optical scheme, each of the superimposed volume holographic gratings in the diffraction waveguide forms a corresponding part of the composite angular field of view of the augmented reality device. A proposed mathematical model based on angular multiplexing made it possible to synthesize the diffraction optical element for a new type of diffraction waveguide made from photo-thermo-refractive glass and to create a prototype with an angular resolution of at least 3.0 ± 0.5′, with a brightness change in the image of less than 20% and with a composite angular field of view of 32°.
topic Bragg gratings
holographic replication
diffraction waveguides
near-eye display
multiplex holography
waveguide display
url https://www.mdpi.com/2304-6732/8/7/232
work_keys_str_mv AT mariashishova selectivecouplersbasedonmultiplexedvolumeholographicgratingsforwaveguidedisplays
AT alexanderzherdev selectivecouplersbasedonmultiplexedvolumeholographicgratingsforwaveguidedisplays
AT sergeyodinokov selectivecouplersbasedonmultiplexedvolumeholographicgratingsforwaveguidedisplays
AT vladimirvenediktov selectivecouplersbasedonmultiplexedvolumeholographicgratingsforwaveguidedisplays
AT dmitriilushnikov selectivecouplersbasedonmultiplexedvolumeholographicgratingsforwaveguidedisplays
AT yohankim selectivecouplersbasedonmultiplexedvolumeholographicgratingsforwaveguidedisplays
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