| Literature DB >> 33154594 |
Tobias Hula1,2, Katrin Schultheiss1, Aleksandr Buzdakov1, Lukas Körber1,3, Mauricio Bejarano1, Luis Flacke4,5, Lukas Liensberger4,5, Mathias Weiler4,5, Justin M Shaw6, Hans T Nembach6,7, Jürgen Fassbender1,3, Helmut Schultheiss1,3.
Abstract
We report on the impact of nonlinear four-magnon scattering on magnon transport in microstructured Co25Fe75 waveguides with low magnetic damping. We determine the magnon propagation length with microfocused Brillouin light scattering over a broad range of excitation powers and detect a decrease of the attenuation length at high powers. This is consistent with the onset of nonlinear four-magnon scattering. Hence, it is critical to stay in the linear regime, when deriving damping parameters from the magnon propagation length. Otherwise, the intrinsic nonlinearity of magnetization dynamics may lead to a misinterpretation of magnon propagation lengths and, thus, to incorrect values of the magnetic damping of the system.Entities:
Year: 2020 PMID: 33154594 PMCID: PMC7607913
Source DB: PubMed Journal: Appl Phys Lett ISSN: 0003-6951 Impact factor: 3.791