Strain-controlled Domain Wall injection into nanowires for sensor applications
Giovanni Masciocchi (1, 2), Mouad Fattouhi (3), Andreas Kehlberger, (2), Luis Lopez-Diaz (3), Maria-Andromachi Syskaki (1, 4), Mathias, Kl\"aui (1) ((1) Johannes Gutenberg - University Mainz, (2) Sensitec GmbH,, (3) Universidad de Salamanca, (4) Singulus Technologies AG)

TL;DR
This study experimentally examines how externally applied strain affects domain wall injection in magnetic nanowires, revealing that strain influences the injection field and switching mechanisms, with implications for sensor performance.
Contribution
It demonstrates the impact of strain-induced anisotropy on domain wall injection and shows how magnetic anisotropy can counteract strain effects, supported by micromagnetic simulations.
Findings
Strain increases the domain wall injection field.
The switching mechanism depends on strain direction.
Magnetic anisotropy can counteract strain effects.
Abstract
We investigate experimentally the effects of externally applied strain on the injection of 180 domain walls (DW) from a nucleation pad into magnetic nanowires, as typically used for DW-based sensors. In our study the strain, generated by substrate bending, induces in the material a uniaxial anisotropy due to magnetoelastic coupling. To compare the strain effects, , and samples with in-plane magnetization and different magnetoelastic coupling are deposited. In these samples, we measure the magnetic field required for the injection of a DW, by imaging differential contrast in a magneto-optical Kerr microscope. We find that strain increases the DW injection field, however, the switching mechanism depends strongly on the direction of the strain with respect to the wire axis. We observe that low magnetic anisotropy facilitates the creation…
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