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10.1038/ncomms14761

http://scihub22266oqcxt.onion/10.1038/ncomms14761
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C5353624!5353624 !28281542
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suck abstract from ncbi

pmid28281542
      Nat+Commun 2017 ; 8 (?): 14761
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  • Observation of stable Néel skyrmions in cobalt/palladium multilayers with Lorentz transmission electron microscopy #MMPMID28281542
  • Pollard SD ; Garlow JA ; Yu J ; Wang Z ; Zhu Y ; Yang H
  • Nat Commun 2017[Mar]; 8 (?): 14761 PMID28281542 show ga
  • Néel skyrmions are of high interest due to their potential applications in a variety of spintronic devices, currently accessible in ultrathin heavy metal/ferromagnetic bilayers and multilayers with a strong Dzyaloshinskii-Moriya interaction. Here we report on the direct imaging of chiral spin structures including skyrmions in an exchange-coupled cobalt/palladium multilayer at room temperature with Lorentz transmission electron microscopy, a high-resolution technique previously suggested to exhibit no Néel skyrmion contrast. Phase retrieval methods allow us to map the internal spin structure of the skyrmion core, identifying a 25?nm central region of uniform magnetization followed by a larger region characterized by rotation from in- to out-of-plane. The formation and resolution of the internal spin structure of room temperature skyrmions without a stabilizing out-of-plane field in thick magnetic multilayers opens up a new set of tools and materials to study the physics and device applications associated with chiral ordering and skyrmions.
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