Arbitrary 3D beam delivery from planar optical waveguides for quantum technology
Arbitrary 3D beam delivery from planar optical waveguides for quantum technology
We design 2D holographically written grating couplers for the generation of arbitrarily shaped free-space beams from integrated planar waveguides. Local grating periods and index modulations depend on target field, pump beam profile and pump depletion.
Ko, Dong-Woo
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Ahmed, Qazi Salman
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Field, James W.
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Gates, James C.
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Horak, Peter
520489b5-ccc7-4d29-bb30-c1e36436ea03
27 June 2023
Ko, Dong-Woo
aae111cb-4988-4b76-9ab2-e077d36538b3
Ahmed, Qazi Salman
2a627fc7-aca4-4380-85d8-90349bbf9e2b
Field, James W.
87ce1146-333d-489c-839d-b6f654049abc
Gates, James C.
b71e31a1-8caa-477e-8556-b64f6cae0dc2
Horak, Peter
520489b5-ccc7-4d29-bb30-c1e36436ea03
Ko, Dong-Woo, Ahmed, Qazi Salman, Field, James W., Gates, James C. and Horak, Peter
(2023)
Arbitrary 3D beam delivery from planar optical waveguides for quantum technology.
2023 Conference on Lasers and Electro-Optics Europe & European Quantum Electronics Conference, International Congress Centre Munich, Munich, Germany.
26 - 30 Jun 2023.
Record type:
Conference or Workshop Item
(Paper)
Abstract
We design 2D holographically written grating couplers for the generation of arbitrarily shaped free-space beams from integrated planar waveguides. Local grating periods and index modulations depend on target field, pump beam profile and pump depletion.
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Accepted/In Press date: 27 June 2023
Published date: 27 June 2023
Venue - Dates:
2023 Conference on Lasers and Electro-Optics Europe & European Quantum Electronics Conference, International Congress Centre Munich, Munich, Germany, 2023-06-26 - 2023-06-30
Identifiers
Local EPrints ID: 479907
URI: http://eprints.soton.ac.uk/id/eprint/479907
PURE UUID: 3f5ac68d-7b3f-4557-a5a5-b8390c240d75
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Date deposited: 28 Jul 2023 16:48
Last modified: 26 Nov 2024 02:59
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