Nanoscale imaging and control of domain- wall hopping with a nitrogen- vacancy center microscope

作者:Tetienne J P; Hingant T; Kim J V; Diez L Herrera; Adam J P; Garcia K; Roch J F; Rohart S; Thiaville A; Ravelosona D; Jacques V*
来源:Science, 2014, 344(6190): 1366-1369.
DOI:10.1126/science.1250113

摘要

The control of domain walls in magnetic wires underpins an emerging class of spintronic devices. Propagation of these walls in imperfect media requires defects that pin them to be characterized on the nanoscale. Using a magnetic microscope based on a single nitrogen-vacancy (NV) center in diamond, we report domain-wall imaging on a 1-nanometer-thick ferromagnetic nanowire and directly observe Barkhausen jumps between two pinning sites spaced 50 nanometers apart. We further demonstrate in situ laser control of these jumps, which allows us to drag the domain wall along the wire and map the pinning landscape. Our work demonstrates the potential of NV microscopy to study magnetic nano-objects in complex media, whereas controlling domain walls with laser light may find an application in spintronic devices.

  • 出版日期2014-6-20