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February 8, 2026Annalen der Physik0 citationsOpen Access

Optical Excitation and Detection of Forward Spin Waves

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SCStanislav ColarDKDenis M. KrichevskyAKAnton Kolosvetov

Key Points

  • To explore optical methods for exciting and detecting forward volume magnetostatic spin waves using femtosecond laser pulses.
  • Used oblique incidence of pump and probe femtosecond laser pulses for excitation and detection.
  • Measured propagation of spin waves over 100 microns in distance.
  • Conducted experimental analysis alongside theoretical calculations of velocities.
  • Successfully excited and detected forward spin waves.
  • Verified the forward nature of the excited waves through dispersion analysis.
  • Measured group and phase velocities, confirming experimental findings.

Abstract

ABSTRACT Optical excitation and detection of forward volume magnetostatic spin waves by femtosecond laser pulses are challenging as they require a special configuration of an optical scheme to perform both the launching of spin dynamics and its measurement as well. In this paper, we demonstrate excitation and detection of forward spin waves by using the oblique incidence of both pump and probe femtosecond pulses. The excited wave's propagation over 100 microns was demonstrated. Experimental analysis and theoretical calculations of the dispersion, group, and phase velocities verify the forward nature of the excited spin waves. This study opens a pathway for the utilization of forward spin wave configuration in various optomagnonics studies.

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Cite This Study

Colar et al. (2026) studied this question.

synapsesocial.com/papers/698828990fc35cd7a88483d3https://doi.org/10.1002/andp.202500596
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