Chiral magnetic order at surfaces driven by inversion asymmetry

被引:799
作者
Bode, M.
Heide, M.
von Bergmann, K.
Ferriani, P.
Heinze, S.
Bihlmayer, G.
Kubetzka, A.
Pietzsch, O.
Bluegel, S.
Wiesendanger, R.
机构
[1] Univ Hamburg, Inst Appl Phys, D-20355 Hamburg, Germany
[2] Univ Hamburg, Microstruct Res Ctr, D-20355 Hamburg, Germany
[3] Forschungszentrum Julich, Inst Festkorperforsch, D-52425 Julich, Germany
关键词
D O I
10.1038/nature05802
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Chirality is a fascinating phenomenon that can manifest itself in subtle ways, for example in biochemistry ( in the observed single-handedness of biomolecules(1)) and in particle physics ( in the charge-parity violation of electroweak interactions(2)). In condensed matter, magnetic materials can also display single-handed, or homochiral, spin structures. This may be caused by the Dzyaloshinskii - Moriya interaction, which arises from spin - orbit scattering of electrons in an inversion-asymmetric crystal field(3,4). This effect is typically irrelevant in bulk metals as their crystals are inversion symmetric. However, low-dimensional systems lack structural inversion symmetry, so that homochiral spin structures may occur(5). Here we report the observation of magnetic order of a specific chirality in a single atomic layer of manganese on a tungsten ( 110) substrate. Spin-polarized scanning tunnelling microscopy reveals that adjacent spins are not perfectly antiferromagnetic but slightly canted, resulting in a spin spiral structure with a period of about 12 nm. We show by quantitative theory that this chiral order is caused by the Dzyaloshinskii - Moriya interaction and leads to a left-rotating spin cycloid. Our findings confirm the significance of this interaction for magnets in reduced dimensions. Chirality in nanoscale magnets may play a crucial role in spintronic devices, where the spin rather than the charge of an electron is used for data transmission and manipulation. For instance, a spin-polarized current flowing through chiral magnetic structures will exert a spin-torque on the magnetic structure(6,7), causing a variety of excitations or manipulations of the magnetization(8,9) and giving rise to microwave emission, magnetization switching, or magnetic motors.
引用
收藏
页码:190 / 193
页数:4
相关论文
共 27 条
  • [1] Emission of spin waves by a magnetic multilayer traversed by a current
    Berger, L
    [J]. PHYSICAL REVIEW B, 1996, 54 (13): : 9353 - 9358
  • [2] Atomic spin structure of antiferromagnetic domain walls
    Bode, M.
    Vedmedenko, E. Y.
    Von Bergmann, K.
    Kubetzka, A.
    Ferriani, P.
    Heinze, S.
    Wiesendanger, R.
    [J]. NATURE MATERIALS, 2006, 5 (06) : 477 - 481
  • [3] Magnetization-direction-dependent local electronic structure probed by scanning tunneling spectroscopy -: art. no. 237205
    Bode, M
    Heinze, S
    Kubetzka, A
    Pietzsch, O
    Nie, X
    Bihlmayer, G
    Blügel, S
    Wiesendanger, R
    [J]. PHYSICAL REVIEW LETTERS, 2002, 89 (23) : 1 - 237205
  • [4] Spin-polarized scanning tunnelling microscopy
    Bode, M
    [J]. REPORTS ON PROGRESS IN PHYSICS, 2003, 66 (04) : 523 - 582
  • [5] Structural, electronic, and magnetic properties of a Mn monolayer on W(110) -: art. no. 014425
    Bode, M
    Heinze, S
    Kubetzka, A
    Pietzsch, O
    Hennefarth, M
    Getzlaff, M
    Wiesendanger, R
    Nie, X
    Bihlmayer, G
    Blügel, S
    [J]. PHYSICAL REVIEW B, 2002, 66 (01) : 144251 - 1442516
  • [6] DZIALOSHINSKII IE, 1957, SOV PHYS JETP-USSR, V5, P1259
  • [7] DZYALOSHINSKII IE, 1965, SOV PHYS JETP-USSR, V20, P665
  • [8] Antimatter matters
    Ellis, J
    [J]. NATURE, 2003, 424 (6949) : 631 - 634
  • [9] SPIN-DENSITY-WAVE ANTIFERROMAGNETISM IN CHROMIUM
    FAWCETT, E
    [J]. REVIEWS OF MODERN PHYSICS, 1988, 60 (01) : 209 - 283
  • [10] Fert A., 1990, MATER SCI FORUM, V5960, P439, DOI [DOI 10.4028/WWW.SCIENTIFIC.NET/MSF.59-60.439), 10.4028/www.scientific.net/MSF.59-60.439, DOI 10.4028/WWW.SCIENTIFIC.NET/MSF.59-60.439]