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Particle-in-Cell Codes for plasma-based particle acceleration

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arxiv 1510.01071 v1 pith:4A7ARPFI submitted 2015-10-05 physics.plasm-ph

classification physics.plasm-ph
keywords codesaccelerationplasma-basedscaledisparatefullparticle-in-cellscales
verification ladder T0 review T1 audit T2 compute T3 formal
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Basic principles of particle-in-cell (PIC ) codes with the main application for plasma-based acceleration are discussed. The ab initio full electromagnetic relativistic PIC codes provide the most reliable description of plasmas. Their properties are considered in detail. Representing the most fundamental model, the full PIC codes are computationally expensive. The plasma-based acceler- ation is a multi-scale problem with very disparate scales. The smallest scale is the laser or plasma wavelength (from one to hundred microns) and the largest scale is the acceleration distance (from a few centimeters to meters or even kilometers). The Lorentz-boost technique allows to reduce the scale disparity at the costs of complicating the simulations and causing unphysical numerical instabilities in the code. Another possibility is to use the quasi-static approxi- mation where the disparate scales are separated analytically.

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