Atomic spin structure of antiferromagnetic domain walls

被引:0
|
作者
M. Bode
E. Y. Vedmedenko
K. von Bergmann
A. Kubetzka
P. Ferriani
S. Heinze
R. Wiesendanger
机构
[1] Institute of Applied Physics and Microstructure Research Center,
[2] University of Hamburg,undefined
来源
Nature Materials | 2006年 / 5卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
The search for uncompensated magnetic moments on antiferromagnetic surfaces is of great technological importance as they are responsible for the exchange-bias effect that is widely used in state-of-the-art magnetic storage devices. We have studied the atomic spin structure of phase domain walls in the antiferromagnetic Fe monolayer on W(001) by means of spin-polarized scanning tunnelling microscopy and Monte Carlo simulations. The domain wall width only amounts to 6–8 atomic rows. Although walls oriented along 〈100〉 directions are found to be fully compensated, detailed analysis of 〈110〉-oriented walls reveals an uncompensated perpendicular magnetic moment. Our result represents a major advance in the field of antiferromagnetism, and may lead to a better understanding of the magnetic interaction between ferromagnetic and antiferromagnetic materials.
引用
收藏
页码:477 / 481
页数:4
相关论文
共 50 条
  • [41] INFLUENCE OF FERROMAGNETIC SPIN CLUSTERS ON DOMAIN-STRUCTURE OF DOPED ANTIFERROMAGNETIC EUTE
    VITINS, J
    WACHTER, P
    HELVETICA PHYSICA ACTA, 1973, 46 (04): : 428 - 428
  • [42] Ultrafast optical demagnetization manipulates nanoscale spin structure in domain walls
    Pfau, B.
    Schaffert, S.
    Mueller, L.
    Gutt, C.
    Al-Shemmary, A.
    Buettner, F.
    Delaunay, R.
    Duesterer, S.
    Flewett, S.
    Froemter, R.
    Geilhufe, J.
    Guehrs, E.
    Guenther, C. M.
    Hawaldar, R.
    Hille, M.
    Jaouen, N.
    Kobs, A.
    Li, K.
    Mohanty, J.
    Redlin, H.
    Schlotter, W. F.
    Stickler, D.
    Treusch, R.
    Vodungbo, B.
    Klaeui, M.
    Oepen, H. P.
    Luening, J.
    Gruebel, G.
    Eisebitt, S.
    NATURE COMMUNICATIONS, 2012, 3
  • [43] Magnetic domain walls in antiferromagnetic topological insulator heterostructures
    Devlin, N. B.
    Ferrus, T.
    Barnes, C. H. W.
    PHYSICAL REVIEW B, 2021, 104 (05)
  • [44] ABSENCE OF ANTIFERROMAGNETIC DOMAIN WALLS IN MNF2
    PERSHAN, PS
    PHYSICAL REVIEW LETTERS, 1961, 7 (07) : 280 - &
  • [45] Electric and antiferromagnetic chiral textures at multiferroic domain walls
    J.-Y. Chauleau
    T. Chirac
    S. Fusil
    V. Garcia
    W. Akhtar
    J. Tranchida
    P. Thibaudeau
    I. Gross
    C. Blouzon
    A. Finco
    M. Bibes
    B. Dkhil
    D. D. Khalyavin
    P. Manuel
    V. Jacques
    N. Jaouen
    M. Viret
    Nature Materials, 2020, 19 : 386 - 390
  • [46] Dynamics of antiferromagnetic vortices in yttrium orthoferrite domain walls
    Chetkin M.V.
    Kurbatova Yu. N.
    Shapaeva T.B.
    Borshchegovskii O.A.
    Bulletin of the Russian Academy of Sciences: Physics, 2007, 71 (11) : 1491 - 1493
  • [47] Spin structure of antiferromagnetic disclination
    Ivanov, BA
    Kireev, VE
    Voronov, VP
    LOW TEMPERATURE PHYSICS, 1997, 23 (08) : 635 - 641
  • [48] Spin structure of antiferromagnetic disclination
    Ivanov, B.A.
    Kireev, V.E.
    Voronov, V.P.
    Fizika Nizkikh Temperatur (Kharkov), 1997, 23 (08): : 845 - 853
  • [49] Optical domain walls in atomic vapors
    Haelterman, M
    Louis, Y
    JOURNAL OF NONLINEAR OPTICAL PHYSICS & MATERIALS, 1996, 5 (03): : 447 - 456
  • [50] Experimental observation of the interaction of propagating spin waves with Neel domain walls in a Landau domain structure
    Pirro, P.
    Koyama, T.
    Braecher, T.
    Sebastian, T.
    Leven, B.
    Hillebrands, B.
    APPLIED PHYSICS LETTERS, 2015, 106 (23)