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arxiv: 1603.02930 · v1 · pith:PLOQIC5Hnew · submitted 2016-03-09 · ⚛️ physics.plasm-ph · physics.optics

Amplification and generation of ultra-intense twisted laser pulses via stimulated Raman scattering

classification ⚛️ physics.plasm-ph physics.optics
keywords twistedaccelerationdirectionshighintensitylaserlaserslight
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Twisted Laguerre-Gaussian lasers, with orbital angular momentum and characterised by doughnut shaped intensity profiles, provide a transformative set of tools and research directions in a growing range of fields and applications, from super-resolution microcopy and ultra-fast optical communications to quantum computing and astrophysics. The impact of twisted light is widening as recent numerical calculations provided solutions to long-standing challenges in plasma-based acceleration by allowing for high gradient positron acceleration. The production of ultrahigh intensity twisted laser pulses could then also have a broad influence on relativistic laser-matter interactions. Here we show theoretically and with ab-initio three-dimensional particle-in-cell simulations, that stimulated Raman backscattering can generate and amplify twisted lasers to Petawatt intensities in plasmas. This work may open new research directions in non-linear optics and high energy density science, compact plasma based accelerators and light sources.

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