Modular multiscale approach to modelling high-harmonic generation in gases
Optics
2026-02-06 v2 Computational Physics
Abstract
We present a modular user-oriented simulation toolbox for studying highharmonic generation in gases. The first release consists of the computational pipeline to 1) compute the unidirectional IR-pulse propagation incylindrical symmetry, 2) solve the microscopic responses in the whole macroscopic volume using a 1D-TDSE solver, 3) obtain the far-field harmonic field using a diffraction-integral approach. The code comes with interfaces and tutorials, based on practical laboratory conditions, to facilitate the usage and deployment of the code both locally and in HPC-clusters. Additionally, the modules are designed to work as stand-alone applications as well, e.g., 1D-TDSE is available through Pythonic interface.
Keywords
Cite
@article{arxiv.2507.04115,
title = {Modular multiscale approach to modelling high-harmonic generation in gases},
author = {Jan Vábek and Tadeáš Němec and Stefan Skupin and Fabrice Catoire},
journal= {arXiv preprint arXiv:2507.04115},
year = {2026}
}