English

Enhanced dynamic range spatio-spectral metrology of few-cycle laser pulses

Optics 2026-03-31 v1 Instrumentation and Detectors

Abstract

Accurate spatio-temporal and spatio-spectral metrology is critical to the characterization and use of ultra-short, high-power lasers. The emergence of few cycle pulses, with bandwidths of tens or hundreds of nanometers, poses a significant challenge to existing metrology techniques. This is due both to large discrepancies in the sensitivities of the measurements at different wavelengths and to variation in the spectral intensity at those wavelengths. In this paper, the authors propose spectral filtering and stitching of the measurements as a robust, simple solution that enhances the dynamic range of the measurements, allowing accurate few-cycle pulse reconstruction. This enhancement is demonstrated using INSIGHT -- the most commonly used spatio-spectral measurement device -- as well as using IMPALA and spatially resolved Fourier transform spectrometry.

Keywords

Cite

@article{arxiv.2603.27815,
  title  = {Enhanced dynamic range spatio-spectral metrology of few-cycle laser pulses},
  author = {Cristian Alexe and Aaron Liberman and Saga Westerberg and Andrea Angella and Anda-Maria Talposi and Erik Löfquist and Alice Dumitru and Andrew H. Okukura and Flanish D'Souza and Cornelia Gustafsson and Anders Persson and Chen Guo and Cord Arnold and Olle Lundh and Victor Malka and Daniel Ursescu},
  journal= {arXiv preprint arXiv:2603.27815},
  year   = {2026}
}

Comments

11 pages, 6 figures