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Experimental Confirmation of Ruderman–Kittel–Kasuya–Yosida type interlayer Dzyaloshinskii-Moriya interaction across Ru spacers

POSTER

Abstract

In recent years, as the attention in spintronics expands from collinear to noncollinear magnetism, the interlayer Dzyaloshinskii-Moriya interaction (IL-DMI) has been proven capable of mediate long-range chiral spin textures between magnetic layers. Here, we experimentally confirm that analogous to the Ruderman–Kittel–Kasuya–Yosida (RKKY) interaction, where indirect coupling oscillates between parallel and antiparallel states with spacer thickness, a damped oscillation in IL-DMI strength and direction is observed. Specifically, an oscillation period of ≈ 0.96 nm is obtained when mediated by a Ru spacer, close to the 1.15 nm reported for conventional RKKY while well fitted by theoretical predictions. In contrast, no oscillation is observed when IL-DMI is mediated by a Pt spacer, consistent with the negligible RKKY coupling across Pt. This work experimentally confirms the physical origin of IL-DMI as stemming from the RKKY mechanism, while also providing a tuning knob in controlling IL-DMI’s polarity and strength by adjusting spacer thickness, beneficial to the development of future three-dimensional spintronics memory devices.

Publication: (1) Huang, Y. H.; Han, J. H.; Liao, W. B.; Hu, C. Y.; Liu, Y. T.; Pai, C. F. Tailoring Interlayer Chiral <br>Exchange by Azimuthal Symmetry Engineering. Nano Lett. 2024, 24, (2), 649-656. <br>(2) Huang, Y. H.†; , Lu, X. W.†; Han, J. H.; Peng, C. C.; Pai, C. F. Experimental Confirmation of Ruderman–Kittel–Kasuya–Yosida type interlayer Dzyaloshinskii-Moriya interaction across Ru spacers. Nano Lett.(submitted)

Presenters

  • Xi-Wei Lu

    National Taiwan University

Authors

  • Chi-Feng Pai

    National Taiwan University, Natl Taiwan Univ

  • Xi-Wei Lu

    National Taiwan University

  • Yu-Hao Huang

    National Taiwan University

  • Jui-Hsu Han

    National Taiwan University

  • Chih-Chen Peng

    National Taiwan University