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- W2898020110 abstract "Recent progress in veious nano-scale etching techniques enables us to confine and manipulate magnetic domain walls (DWs) inside patterned ferromagnetic nanostructures. Control and understanding of DW dynamic behaviors are essential for future realization of spintronic devices based on the soliton-like DW motion. In verious ferromagnetic nanowires, dynamic behaviours of the soliton-like DW have been numerically and experimentally proposed recently [1]–[3]. In nanowires, the DW isolatism during the DW propagation is significantly affected by the nanowire geometry and dimension. In particular, DW dynamic behaviors in nanowires are restricted by various effects such as onset, pinning, Walker breakdown and so on. In this work, we numerically investigated dynamic behaviours of soliton-like DWs in discrete magnetic nanodot chains as a dissipative system with change the strength of the driving magnetic field. Considering the feasibility of the experiment, the discrete magnetic nanodot chain has been arranged in L-shape, as show in Fig 1. In order to prevent the introduction of superfluous DW, special nanodots are made in both ends of the chain (see Fig 1). Under the magnetic field drive, we have found that the DW is transferred in the chain conditionally, which is ascribed to the fact that there exists a dipole-dipole interaction between adjacent nanodots. The interaction depends on the nanodot geometry and the depinning field, as indirectly shown in Fig. 1(a). To find the mechanism, we systematically examined stepwise behaviors of the soliton-like DW propagation in this scheme with changes of the magnetic field strength and the nanodot geometry, as shown in Fig. 1(b)." @default.
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- W2898020110 date "2016-08-01" @default.
- W2898020110 modified "2023-10-18" @default.
- W2898020110 title "Magnetic Domain Wall Transfer in Discrete Magnetic Nanodot Chains" @default.
- W2898020110 doi "https://doi.org/10.1109/icaums.2016.8480000" @default.
- W2898020110 hasPublicationYear "2016" @default.
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