Aberration-induced vortex splitting in amplified orbital angular momentum beams

dc.article.end-page17608
dc.article.start-page17593
dc.contributor.authorHarrison, Justin
dc.contributor.authorBuono, Wagner Tavares
dc.contributor.authorForbes, Andrew
dc.contributor.authorNaidoo, Darryl
dc.date.accessioned2026-07-07T13:04:58Z
dc.date.issued2023
dc.description.abstractHere we report the generation and power amplification of higher-order (l = 2) orbital angular momentum (OAM) beams using a compact end-pumped Nd:YAG Master-OscillatorPower-Amplifier (MOPA) design. We analysed the thermally-induced wavefront aberrations of the Nd:YAG crystal using a Shack-Hartmann sensor as well as modal decomposition of the field and show that the natural astigmatism in such systems results in the splitting of vortex phase singularities. Finally, we show how this can be ameliorated in the far field through engineering of the Gouy phase, realising an amplified vortex purity of 94% while achieving an amplification enhancement of up to 1200%. Our comprehensive theoretical and experimental investigation will be of value to communities pursuing high-power applications of structured light, from communications to materials processing.
dc.description.submitterPM2026
dc.facultyFaculty of Science
dc.identifier0000-0002-0115-9537
dc.identifier0000-0003-1669-2681
dc.identifier0000-0003-2552-5586
dc.identifier0000-0002-7774-4935
dc.identifier.citationHarrison, J., Buono, W. T., Forbes, A., & Naidoo, D. "Aberration-induced vortex splitting in amplified orbital angular momentum beams," Opt. Express 31, 17593-17608 (2023)
dc.identifier.issn1094-4087 (online)
dc.identifier.urihttps://hdl.handle.net/10539/49548
dc.journal.issueIssue 11
dc.journal.titleOptics Express
dc.journal.volumeVol. 31
dc.language.isoen
dc.rights© 2023 Optica Publishing Group under the terms of the Optica Open Access Publishing Agreement
dc.schoolSchool of Physics
dc.subjectSpontaneous parametric down-conversion (SPDC)
dc.subjectOrbital angular momentum beams
dc.subjectAberration-induced vortex
dc.subjectLight beams
dc.subject.primarysdgSDG-17: Partnerships for the goals
dc.titleAberration-induced vortex splitting in amplified orbital angular momentum beams
dc.typeArticle

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