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Pseudospectral Maxwell solvers for an accurate modeling of Doppler harmonic generation on plasma mirrors with particle-in-cell codes

机译:伪谱麦克斯韦尔韦尔韦尔溶解器,用于粒子内码上等离子镜上的多普勒谐波发电精确建模

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摘要

With the advent of petawatt class lasers, the very large laser intensities attainable on target should enable the production of intense high-order Doppler harmonics from relativistic laser-plasma mirror interactions. At present, the modeling of these harmonics with particle-in-cell (PIC) codes is extremely challenging as it implies an accurate description of tens to hundreds of harmonic orders on a broad range of angles. In particular, we show here that due to the numerical dispersion of waves they induce in vacuum, standard finite difference time domain (FDTD) Maxwell solvers employed in most PIC codes can induce a spurious angular deviation of harmonic beams potentially degrading simulation results. This effect was extensively studied and a simple toy model based on the Snell-Descartes law was developed that allows us to finely predict the angular deviation of harmonics depending on the spatiotemporal resolution and the Maxwell solver used in the simulations. Our model demonstrates that the mitigation of this numerical artifact with FDTD solvers mandates very high spatiotemporal resolution preventing realistic three-dimensional (3D) simulations even on the largest computers available at the time of writing. We finally show that nondispersive pseudospectral analytical time domain solvers can considerably reduce the spatiotemporal resolution required to mitigate this spurious deviation and should enable in the near future 3D accurate modeling on supercomputers in a realistic time to solution.
机译:随着Petawatt级激光器的出现,目标上可获得的非常大的激光强度应使得能够从相对论激光等离子镜相互作用产生强烈的高阶多普勒谐波。目前,使用粒子 - 细胞(PIC)代码的这些谐波的建模非常具有挑战性,因为它意味着在宽范围的角度上对数百个谐波令的准确描述。特别地,我们在此示出,由于它们在真空中诱导的波的数值分散,大多数PIC代码中采用的标准有限差分时域(FDTD)Maxwell溶解器可以引起谐波梁的虚拟角度偏差可能降低模拟结果。这种效果是广泛研究的,并且开发了一种基于Snell-Descartes法律的简单玩具模型,使我们能够根据空间分辨率和模拟中使用的Maxwell求解器来精细地预测谐波的角度偏差。我们的模型表明,使用FDTD求解器的这种数值伪影的减轻授权非常高的时空分辨率,即使在写作时的最大计算机上也可以防止现实的三维(3D)模拟。我们终于表明,非运动伪谱分析时域溶剂可以大大降低减轻这种虚假偏差所需的时空分辨率,并应在近期在超级计算机上的近期3D准确建模中实现解决方案。

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