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Optics Express
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October 13, 2022
Advanced beam shaping for laser materials processing based on diffractive neural networks
Paul Buske, Annika Völl, Moritz Eisebitt, et al.
Optics Express
|
March 5, 2024
High fidelity laser beam shaping using liquid crystal on silicon spatial light modulators as diffractive neural networks
Paul Buske, Oskar Hofmann, Annika Bonnhoff, et al.
Optics Express
|
December 31, 2020
Freeform optics design for extended sources in paraxial approximation exploiting the expectation maximization algorithm
Annika Völl, Michael Berens, Rolf Wester, et al.
Optics Express
|
June 14, 2025
Diffractive neural networks with polynomial phase masks for laser beam shaping with quasi-continuous diffractive optical elements
Paul Buske, Louis Michels, Christian Wahl, et al.
Nature Communications
|
April 18, 2025
Infrared beam-shaping on demand via tailored geometric phase metasurfaces employing the plasmonic phase-change material In<sub>3</sub>SbTe<sub>2</sub>
Lukas Conrads, Florian Bontke, Andreas Mathwieser, et al.
Page
of 1
Search research articles
Search
Showing results (1-10 of 5) with videos related to
Sort By:
Page
of 1
Optics Express
|
October 13, 2022
Advanced beam shaping for laser materials processing based on diffractive neural networks
Paul Buske, Annika Völl, Moritz Eisebitt, et al.
Optics Express
|
March 5, 2024
High fidelity laser beam shaping using liquid crystal on silicon spatial light modulators as diffractive neural networks
Paul Buske, Oskar Hofmann, Annika Bonnhoff, et al.
Optics Express
|
December 31, 2020
Freeform optics design for extended sources in paraxial approximation exploiting the expectation maximization algorithm
Annika Völl, Michael Berens, Rolf Wester, et al.
Optics Express
|
June 14, 2025
Diffractive neural networks with polynomial phase masks for laser beam shaping with quasi-continuous diffractive optical elements
Paul Buske, Louis Michels, Christian Wahl, et al.
Nature Communications
|
April 18, 2025
Infrared beam-shaping on demand via tailored geometric phase metasurfaces employing the plasmonic phase-change material In<sub>3</sub>SbTe<sub>2</sub>
Lukas Conrads, Florian Bontke, Andreas Mathwieser, et al.
Page
of 1