| Literature DB >> 33149347 |
Luis Flacke1,2, Lukas Liensberger1,2, Matthias Althammer1,2, Hans Huebl1,2,3,4, Stephan Geprägs1, Katrin Schultheiss5, Aleksandr Buzdakov5, Tobias Hula5, Helmut Schultheiss5, Eric R J Edwards6, Hans T Nembach6, Justin M Shaw6, Rudolf Gross1,2,3,4, Mathias Weiler1,2.
Abstract
We report ultralow intrinsic magnetic damping in Co25Fe75 heterostructures, reaching the low 10-4 regime at room temperature. By using a broadband ferromagnetic resonance technique in out-of-plane geometry, we extracted the dynamic magnetic properties of several Co25Fe75-based heterostructures with varying ferromagnetic layer thicknesses. By measuring radiative damping and spin pumping effects, we found the intrinsic damping of a 26 nm thick sample to be α 0 ≲ 3.18 × 10-4. Furthermore, using Brillouin light scattering microscopy, we measured spin-wave propagation lengths of up to (21 ± 1) μm in a 26 nm thick Co25Fe75 heterostructure at room temperature, which is in excellent agreement with the measured damping.Entities:
Year: 2019 PMID: 33149347 PMCID: PMC7607910
Source DB: PubMed Journal: Appl Phys Lett ISSN: 0003-6951 Impact factor: 3.791