3D transparent optical display based on periodically poled lithium niobate
3D transparent optical display based on periodically poled lithium niobate
We demonstrate a close-to-eye display technology for mixed reality capable of showing live video which uses nonlinear wave-mixing in periodically poled lithium niobate. The approach allows for a fully transparent display, with high brightness and capable of controlling the localisation of the virtual image and thus holding promise for solving the vergence / accommodation conflict.
Smith, Peter G.R.
8979668a-8b7a-4838-9a74-1a7cfc6665f6
Tawy, Goronwy
be5a54aa-e151-460f-8f1f-3a99ae4fe540
Bannerman, Rex H.
7f7d5c3e-8e5d-45d5-8fd7-8d1511330e08
Gawith, Corin B.E.
926665c0-84c7-4a1d-ae19-ee6d7d14c43e
8 August 2024
Smith, Peter G.R.
8979668a-8b7a-4838-9a74-1a7cfc6665f6
Tawy, Goronwy
be5a54aa-e151-460f-8f1f-3a99ae4fe540
Bannerman, Rex H.
7f7d5c3e-8e5d-45d5-8fd7-8d1511330e08
Gawith, Corin B.E.
926665c0-84c7-4a1d-ae19-ee6d7d14c43e
Smith, Peter G.R., Tawy, Goronwy, Bannerman, Rex H. and Gawith, Corin B.E.
(2024)
3D transparent optical display based on periodically poled lithium niobate.
In Proceedings: 2024 Conference on Lasers and Electro-Optics Pacific Rim (CLEO-PR).
Optica Publishing Group..
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Abstract
We demonstrate a close-to-eye display technology for mixed reality capable of showing live video which uses nonlinear wave-mixing in periodically poled lithium niobate. The approach allows for a fully transparent display, with high brightness and capable of controlling the localisation of the virtual image and thus holding promise for solving the vergence / accommodation conflict.
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Published date: 8 August 2024
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Local EPrints ID: 511186
URI: http://eprints.soton.ac.uk/id/eprint/511186
PURE UUID: 07455daf-afaf-4d4a-9c04-7f7366442856
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Date deposited: 06 May 2026 16:36
Last modified: 07 May 2026 01:58
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