Wakefield acceleration and betatron radiation driven by linearly polarized Laguerre-Gaussian orbital angular momentum laser pulses
ORAL
Abstract
In this work, we report on the first results of wakefield accelerated electrons by ultra-intense linearly polarized Laguerre-Gaussian orbital angular momentum (OAM) modes. These modes, generated after compression in the VEGA2 200TW Titanium:Sapphire laser system at the Centro de Láseres Pulsados (CLPU) in Spain used new novel off-axis spiral phase mirrors to convert the flat top laser mode to high purity Laguerre-Gaussian LG10, LG20 and LG-10 beams with intensities of over 10^18Wcm-2. The difference in electron and betatron divergence, flux, and spectrum when compared to the standard TEM00 mode will be presented. Additionally, the generation of strong axial magnetic fields in these new interactions will be discussed. These results will be compared to simple analytic scaling models and simulations using the 3D PIC code EPOCH.
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Presenters
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Andrew Longman
University of Alberta
Authors
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Andrew Longman
University of Alberta
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Carlos Salgado
Centro de Láseres Pulsados
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Ghassan Zeraouli
Centro de Láseres Pulsados
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Jon Imanol Apiñaniz
Centro de Láseres Pulsados
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Jose Antonio Pérez-Hernández
Centro de Láseres Pulsados
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Massimo De Marco
Centro de Láseres Pulsados
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Calvin He
University of Maryland-College Park
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Giancarlo Gatti
Centro de Láseres Pulsados
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Luca Volpe
Centro de Láseres Pulsados
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Wendell T Hill
University of Maryland-College Park
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Robert Fedosejevs
University of Alberta, Univ of Alberta