论文标题

使用映射到周期性空间优化了对短脉冲的紧密聚焦的优化计算

Optimized computation of tight focusing of short pulses using mapping to periodic space

论文作者

Panova, Elena, Volokitin, Valentin, Efimenko, Evgeny, Ferri, Julien, Blackburn, Thomas, Marklund, Mattias, Muschet, Alexander, Gonzalez, Aitor De Andres, Fischer, Peter, Veisz, Laszlo, Meyerov, Iosif, Gonoskov, Arkady

论文摘要

当脉冲,几个循环电磁波被小于两个小于两个的光学元件聚焦时,它包含的频率成分聚焦在不同的空间区域,从而构建了复杂的电磁场结构。该结构的准确数值计算对于许多应用,例如分析,诊断和控制高强度激光 - 膜相互作用的必不可少。但是,由于有必要以足够高的分辨率解决远场和近场区,以克服数值分散效应,因此直接使用有限差异方法对计算资源的需求征收不可接受的高需求。在这里,我们提出了一个程序,通过将球形弯曲的远场区域映射到周期性空间,以快速计算紧密聚焦,在该空间中可以通过无分散光谱求解器提出场。在许多感兴趣的情况下,映射将运行时间和内存要求减少了订单10的一倍,因此可以在台式机上进行模拟或超级计算机的单个节点。我们提供了带有Python绑定的开源C ++实现,并证明了其用于台式机的使用,该例程提供了使用足以处理脉冲的分辨率的机会,而光谱跨越了几个八度。所描述的方法可以促进理论建议的稳定性分析,基于统计推断的研究,以及紧密凝视的短激光脉冲的整体开发和分析。

When a pulsed, few-cycle electromagnetic wave is focused by optics with f-number smaller than two, the frequency components it contains are focused to different regions of space, building up a complex electromagnetic field structure. Accurate numerical computation of this structure is essential for many applications such as the analysis, diagnostics, and control of high-intensity laser-matter interactions. However, straightforward use of finite-difference methods can impose unacceptably high demands on computational resources, owing to the necessity of resolving far-field and near-field zones at sufficiently high resolution to overcome numerical dispersion effects. Here, we present a procedure for fast computation of tight focusing by mapping a spherically curved far-field region to periodic space, where the field can be advanced by a dispersion-free spectral solver. In many cases of interest, the mapping reduces both run time and memory requirements by a factor of order 10, making it possible to carry out simulations on a desktop machine or a single node of a supercomputer. We provide an open-source C++ implementation with Python bindings and demonstrate its use for a desktop machine, where the routine provides the opportunity to use the resolution sufficient for handling the pulses with spectra spanning over several octaves. The described approach can facilitate the stability analysis of theoretical proposals, the studies based on statistical inferences, as well as the overall development and analysis of experiments with tightly-focused short laser pulses.

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