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One-to-one full scale simulations of laser wakefield acceleration using QuickPIC

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arxiv 0806.3637 v1 pith:VRQHUZWP submitted 2008-06-23 physics.plasm-ph

One-to-one full scale simulations of laser wakefield acceleration using QuickPIC

classification physics.plasm-ph
keywords laserquickpicaccelerationchannelsfullone-to-oneplasmapropagation
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We use the quasi-static particle-in-cell code QuickPIC to perform full-scale, one-to-one LWFA numerical experiments, with parameters that closely follow current experimental conditions. The propagation of state-of-the-art laser pulses in both preformed and uniform plasma channels is examined. We show that the presence of the channel is important whenever the laser self-modulations do not dominate the propagation. We examine the acceleration of an externally injected electron beam in the wake generated by 10 J laser pulses, showing that by using ten-centimeter-scale plasma channels it is possible to accelerate electrons to more than 4 GeV. A comparison between QuickPIC and 2D OSIRIS is provided. Good qualitative agreement between the two codes is found, but the 2D full PIC simulations fail to predict the correct laser and wakefield amplitudes.

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