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Interplay between magnetic frustration, magnetocrystalline anisotropy and Dzyaloshinskii-Moriya interaction in chiral Co-Zn-Mn alloys

ORAL · Invited

Abstract

The competition between the magnetic interactions in non-centrosymmetric compounds results in complex phase diagrams. The interplay between symmetric exchange, antisymmetric Dzyaloshinskii-Moriya interaction and crystal anisotropy stabilizes long-range modulated magnetic phases hosting topological skyrmion lattice (SkL). In chiral cubic helimagnets, SkLs are usually stabilized by thermal fluctuations over a narrow region below the magnetic ordering temperature Tc [1]. Recently a new class of chiral alloys CoZnMn with β-Mn structure was found to be SkL-hosting in the large temperature range, even above room temperature [2]. Moreover, an additional low-temperature disordered equilibrium skyrmion phase (LTSk) has been recently found in Co7Zn7Mn6 [3]. Here, by using multiple quantum beam probes, we unveil a direct correlation between the stability of the LTSk – stable far from Tc, and a concomitant enhancement of an underlying magnetic fluctuation rate that is driven by geometric magnetic frustration. The influences of other leading skyrmion stability mechanisms, such as those derived from thermal fluctuations [1] and low T cubic anisotropies [4], are shown to be weak in this system. We therefore advance the existing of a fundamental mechanism for stabilizing topological phase in Co7Zn7Mn6 that draws upon magnetic frustration as the key ingredient [6]. The elaboration of a such a stability mechanism could find general relevance in the ongoing research topological magnetic textures amongst the multifarious frustrated magnets.

[1] Mühlbauer, S. et al., Science 323, 915–919 2009

[2] Tokunaga, Y., et al., Nat. Commun., 6, 7638 2015

[3] Karube, K., et al., Science Adv., 4(9), eaar7043 2018

[4] Chacon, A. et al., Nat. Phys. 14, 936 2018

[5] Ukleev, V., et al., npj Quantum Mat. 6, 40 2021

Publication: Ukleev, V., Karube, K., Derlet, P.M. et al. Frustration-driven magnetic fluctuations as the origin of the low-temperature skyrmion phase in Co7Zn7Mn6. npj Quantum Mater. 6, 40 (2021). https://doi.org/10.1038/s41535-021-00342-5

Presenters

  • Victor Ukleev

    Paul Scherrer Institute, Laboratory for Neutron Scattering and Imaging, Switzerland

Authors

  • Victor Ukleev

    Paul Scherrer Institute, Laboratory for Neutron Scattering and Imaging, Switzerland

  • Kosuke Karube

    RIKEN CEMS

  • Peter M Derlet

    Paul Scherrer Institute

  • Chennan Wang

    Paul Scherrer Institute

  • Hubertus Luetkens

    Paul Scherrer Institute

  • Daisuke Morikawa

    IMRAM, Tohoku University, RIKEN CEMS

  • Akiko Kikkawa

    RIKEN CEMS

  • Lucile Mangin-Thro

    ILL, Institut Laue-Langevin

  • Andrew R Wildes

    Institut Laue-Langevin, Institut Laue Langevin

  • Yuichi Yamasaki

    National Institute for Materials Science

  • Yuichi Yokoyama

    National Institute for Materials Science

  • Yu Le

    École Polytechnique Fédérale de Lausanne

  • Cinthia Piamonteze

    Paul Scherrer Institute, Swiss Light Source, Paul Scherrer Institute, 5232 Villigen PSI, Switzerland

  • Nicolas Jaouen

    SOLEIL

  • Yusuke Tokunaga

    University of Tokyo

  • Henrik M Ronnow

    Ecole Polytechnique Federale de Lausanne

  • Taka-hisa Arima

    RIKEN CEMS

  • Yoshinori Tokura

    Univ of Tokyo, RIKEN, Univ of Tokyo, RIKEN Center for Emergent Matter Science CEMS

  • Jonathan S White

    Paul Scherrer Institute

  • Yasujiro Taguchi

    RIKEN, RIKEN Center for Emergent Matter Science CEMS