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May 17, 20260 citationsOpen Access

Electronic mechanism of sub-100-fs demagnetization induced by a femtosecond light pulse

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KKKonrad KapciaVTVictor TkachenkoCCapodondi

Key Points

  • To understand light-induced demagnetization processes on ultrashort timescales for applications in magnetic devices.
  • Theoretical investigation of light-induced demagnetization in a single magnetic domain
  • Analysis of light pulse durations from a few to tens of femtoseconds
  • Photon energy examination across optical and X-ray regimes
  • Predicted loss of magnetization within sub-100-fs timescale due to electronic excitation
  • Electronic redistribution within magneto-sensitive bands contributes significantly to demagnetization
  • Phonon-mediated and Heisenberg exchange processes were negligible at these short timescales

Abstract

A quantitative understanding of the processes that trigger light-induced demagnetization on ultrashort timescales is crucial for achieving an ultrafast, radiation-controlled magnetic response in materials. This milestone is essential for developing next-generation magnetic storage devices and ultrafast magnetic switches. In this theoretical study, we investigated demagnetization triggered in a single magnetic domain by light pulses ranging from a few to a few tens of femtoseconds in duration, with photon energies spanning the optical and X-ray regimes, under strongly non-equilibrium conditions. We predicted a loss of magnetization in the sub-100-fs range in all cases, primarily due to the excitation of the electronic system and the subsequent redistribution of electrons within the magneto-sensitive band. The considered timescales were too short for phonon-mediated processes or inter-site Heisenberg exchange processes to contribute significantly. These findings pave the way for highly accurate, radiation-driven magnetization control in magnetic materials at sub-100-femtosecond timescales with potential practical applications.

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Cite This Study

Kapcia et al. (2026) studied this question.

synapsesocial.com/papers/6a095bdd7880e6d24efe1c6dhttps://doi.org/10.3204/pubdb-2025-05508
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