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Ultrafast dynamics of chiral spin structures in synthetic antiferromagnets

Zongxia Guo1,2, Raphael Gruber3, Dmitriy Ksenzov4, Cyril Léveillé1,2, Matteo Pancaldi5,6, Emanuele Pedersoli5, Carlo Spezzani5, Giovanni De Ninno5,7, Flavio Capotondi5 et al.

Christian Gutt4, Mathias Kläui3, Vincent Cros2, Nicolas Reyren2, and Nicolas Jaouen1,6

Phys. Rev. B 112, L020408 – Published 28 July, 2025

DOI: https://doi.org/10.1103/1f11-n7dc

Abstract

In synthetic antiferromagnetic multilayers (SAFs), chiral magnetic structures such as spin spirals and skyrmions have been stabilized at room temperature by precisely tuning the effective perpendicular magnetic anisotropy, the Dzyaloshinskii-Moriya interaction, and the Ruderman-Kittel-Kasuya-Yoshida (RKKY) interlayer coupling. In this study, we investigate the dynamics of spin spirals on ultrashort timescales after femtosecond laser pumping in SAFs. The access to ultrafast magnetization dynamics, inaccessible by conventional optical techniques due to the zero net magnetization, has been enabled by the use of time-resolved circular dichroism in x-ray resonant magnetic scattering (CD-XRMS). A pair of two-dimensional x-ray scattering patterns for left and right elliptical polarization (EL and ER) have been recorded for each delay. In contrast to our previous findings in ferromagnetic multilayers, the magnetization (EL+ER) and dichroism (EL−ER) signals exhibit notably similar ultrafast dynamics, with demagnetization occurring on a timescale of ∼180 fs, followed by rapid remagnetization within ∼500 fs. This similarity in ultrafast dynamics can be attributed to the continuous rotation of magnetization in the spin spiral of SAFs, which evolves smoothly in space without forming abrupt domains or alternating domain walls. The ultrafast response and stability in its topological character highlight the potential of SAF-based chiral magnetic structures for future high-speed, energy-efficient data storage and processing applications.

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Let’s Twist Again: Seeing Spin Spirals in Action

Published 28 July, 2025

Using ultrafast x-ray pulses, researchers have probed the chirality of spin spirals in synthetic antiferromagnets.

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