We theoretically investigate the interlayer dipolar and exchange couplings between an array of metallic magnetic nanowires grown on top of an extended ultrathin yttrium iron garnet film. The calculated interlayer dipolar coupling agrees with observed anticrossings [Chen et al., Phys. Rev. Lett. 120, 217202 (2018)PRLTAO0031-900710.1103/PhysRevLett.120.217202], concluding that the interlayer exchange coupling is suppressed by a spacer layer between the nanowires and film for Ni, but not necessarily for Co. The Kittel mode in the nanowire array couples chirally to spin waves in the film, even though Damon-Eshbach surface modes do not exist. The chirality can be suppressed by a strong interlayer exchange coupling.</p
International audienceNon-reciprocal microwave components such as circulators, isolators, and phase ...
| openaire: EC/H2020/665095/EU//MAGicSkyThe magnetic interfacial Dzyaloshinskii–Moriya interaction (...
Chiral magnetism, wherein there is a preferred sense of rotation of the magnetization, determines th...
We theoretically investigate the interlayer dipolar and exchange couplings between an array of metal...
Magnon spintronics is a prosperous field that promises beyond-CMOS technology based on elementary ex...
International audienceWe propose an experimental method for the unidirectional excitation of spin wa...
International audienceWe propose an experimental method for the unidirectional excitation of spin wa...
We report a theory for the coherent and incoherent chiral pumping of spin waves into thin magnetic f...
We review and extend the theory of chiral pumping of spin waves by magnetodipolar stray fields that ...
We observe strong interlayer magnon--magnon coupling in an on-chip nanomagnonic device at room tempe...
International audienceWe report unidirectional transmission of micron-wide spin waves beams in a 55 ...
International audienceNon-reciprocal microwave components such as circulators, isolators, and phase ...
| openaire: EC/H2020/665095/EU//MAGicSkyThe magnetic interfacial Dzyaloshinskii–Moriya interaction (...
Chiral magnetism, wherein there is a preferred sense of rotation of the magnetization, determines th...
We theoretically investigate the interlayer dipolar and exchange couplings between an array of metal...
Magnon spintronics is a prosperous field that promises beyond-CMOS technology based on elementary ex...
International audienceWe propose an experimental method for the unidirectional excitation of spin wa...
International audienceWe propose an experimental method for the unidirectional excitation of spin wa...
We report a theory for the coherent and incoherent chiral pumping of spin waves into thin magnetic f...
We review and extend the theory of chiral pumping of spin waves by magnetodipolar stray fields that ...
We observe strong interlayer magnon--magnon coupling in an on-chip nanomagnonic device at room tempe...
International audienceWe report unidirectional transmission of micron-wide spin waves beams in a 55 ...
International audienceNon-reciprocal microwave components such as circulators, isolators, and phase ...
| openaire: EC/H2020/665095/EU//MAGicSkyThe magnetic interfacial Dzyaloshinskii–Moriya interaction (...
Chiral magnetism, wherein there is a preferred sense of rotation of the magnetization, determines th...