English

Linking High-Harmonic Generation and Strong-Field Ionization in Bulk Crystals

Optics 2023-03-21 v1 Atomic Physics

Abstract

The generation of high-order harmonics in bulk solids subjected to intense ultrashort laser pulses has opened up new avenues for research in extreme nonlinear optics and light-matter interaction on sub-cycle timescales. Despite significant advancement over the past decade, a complete understanding of the involved phenomena is still lacking. High-harmonic generation in solids is currently understood as arising from nonlinear intraband currents, interband recollision and ionization-related phenomena. As all of these mechanisms involve or rely upon laser-driven excitation we combine measurements of the angular dependence of nonlinear absorption and high-order harmonic generation in bulk crystals to demonstrate the relation between high-harmonic emission and nonlinear, laser-induced ionization in solids. An unambiguous correlation between the emission of harmonics and laser-induced ionization is found experimentally, that is supported by numerical solutions of the semiconductor Bloch equations and calculations of orientation-dependent ionization rates using maximally localized Wannier-functions.

Keywords

Cite

@article{arxiv.2303.10956,
  title  = {Linking High-Harmonic Generation and Strong-Field Ionization in Bulk Crystals},
  author = {Peter Jürgens and Sylvianne D. C. Roscam Abbing and Mark Mero and Graham G. Brown and Marc J. J. Vrakking and Alexandre Mermillod-Blondin and Peter M. Kraus and Anton Husakou},
  journal= {arXiv preprint arXiv:2303.10956},
  year   = {2023}
}
R2 v1 2026-06-28T09:23:44.138Z