English

Table-top interferometry on extreme time and wavelength scales

Atomic Physics 2021-12-01 v2 Optics

Abstract

High-resolution Fourier-transform spectroscopy using table-top sources in the extreme ultraviolet (XUV) spectral range is still in its infancy. In this contribution a significant advance is presented based on a Michelson-type all-reflective split-and-delay autocorrelator operating in a quasi amplitude splitting mode. The autocorrelator works under a grazing incidence angle in a broad spectral range (10nm1μm)\mathrm{(10\,nm - 1\,\mu m)} providing collinear propagation of both pulse replicas and thus a constant phase difference across the beam profile. The compact instrument allows for XUV pulse autocorrelation measurements in the time domain with a single-digit attosecond precision resulting in a resolution of E/ΔE=2000\mathrm{E/\Delta E=2000}. Its performance for spectroscopic applications is demonstrated by characterizing a very sharp electronic transition at 26.6eV\mathrm{26.6\,eV} in Ar gas induced by the 11th\mathrm{11^{th}} harmonic of a frequency-doubled Yb-fiber laser leading to the characteristic 3s3p64p1P1\mathrm{3s3p^{6}4p^{1}P^{1}} Fano-resonance of Ar atoms. We benchmark our time-domain interferometry results with a high-resolution XUV grating spectrometer and find an excellent agreement. The common-path interferometer opens up new opportunities for short-wavelength femtosecond and attosecond pulse metrology and dynamic studies on extreme time scales in various research fields.

Keywords

Cite

@article{arxiv.2106.00333,
  title  = {Table-top interferometry on extreme time and wavelength scales},
  author = {S. Skruszewicz and A. Przystawik and D. Schwickert and M. Sumfleth and M. Namboodiri and V. Hilbert and R. Klas and P. Gierschke and V. Schuster and A. Vorobiov and C. Haunhorst and D. Kip and J. Limpert and J. Rothhardt and T. Laarmann},
  journal= {arXiv preprint arXiv:2106.00333},
  year   = {2021}
}

Comments

9 pages, 4 figures

R2 v1 2026-06-24T02:41:56.626Z