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Direct observation of domain wall evolution at a bifurcation in magnetic network structures
, P. Sethi, S. Goolaup, R. Maddu, Y. Chen, S.H. Leong, W.S. Lew
Published in Japan Society of Applied Physics
2014
Volume: 7
   
Issue: 11
Abstract
We report on the magnetization dynamics at a bifurcation in a dual-branch magnetic network structure. When a transverse domain wall (DW) propagates through the network, interaction with an edge defect at the bifurcation leads to the transformation of the DW from transverse to vortex. The topological charge is conserved as the DW moves through the bifurcation, and this charge conservation is intrinsically linked to a -1/2 topological defect in the system. Magnetic force microscopy (MFM) imaging enables the direct observation of defect displacement during DW transformation, which induces a selective switching in the branch of the network structure. © 2014 The Japan Society of Applied Physics
About the journal
JournalApplied Physics Express
PublisherJapan Society of Applied Physics
ISSN18820778