| openaire: EC/H2020/812841/EU//POWERSPINControl of spin waves in magnonic crystals is essential for magnon-based computing. Crystals made of ferromagnetic metals offer versatility in band structure design, but strong magnetic damping restricts their transmission efficiency. Yttrium iron garnet (YIG) with ultralow damping is the palpable alternative, yet its small saturation magnetization limits dipolar coupling between discrete units. Here, we experimentally demonstrate low-loss spin-wave manipulation in magnonic crystals of physically separated nanometer-thick YIG stripes. We enhance the transmission of spin waves in allowed minibands by filling the gaps between YIG stripes with CoFeB. Thus-formed magnonic crystals exhibit tunable bandgap...
Magnonic crystals (MCs) operate with spin waves (SW) in the microwave frequency range [1–8] and are ...
Magnons (spin waves, SWs) are elementary spin excitations in magnetically ordered materials. They ar...
Funding Information: This work was supported by the Academy of Finland (Grant Nos. 317918, 316857, 3...
| openaire: EC/H2020/812841/EU//POWERSPINControl of spin waves in magnonic crystals is essential for...
Long-distance transport and control of spin waves through nanochannels is essential for integrated m...
Long-distance transport and control of spin waves through nanochannels is essential for integrated m...
We report experimental results on spin-wave propagation, transmission gap tuning, and mode conversio...
A one-dimensional magnonic crystal for forward volume spin waves (FV SWs) is demonstrated using eigh...
Quasicrystals are aperiodically ordered structures with unconventional rotational symmetry. Their pe...
| openaire: EC/H2020/812841/EU//POWERSPINWe present a comprehensive investigation of propagating spi...
| openaire: EC/H2020/812841/EU//POWERSPINWe present a comprehensive investigation of propagating spi...
Magnonic devices based on active manipulation of spin waves, provide a broad set of solutions to man...
Spin-waves are coherent excitations of magnetic moments. The frequency at which they oscillate can b...
This thesis reports on three recent experimental studies of microwave magnons in yttrium iron garnet...
This thesis reports on three recent experimental studies of microwave magnons in yttrium iron garnet...
Magnonic crystals (MCs) operate with spin waves (SW) in the microwave frequency range [1–8] and are ...
Magnons (spin waves, SWs) are elementary spin excitations in magnetically ordered materials. They ar...
Funding Information: This work was supported by the Academy of Finland (Grant Nos. 317918, 316857, 3...
| openaire: EC/H2020/812841/EU//POWERSPINControl of spin waves in magnonic crystals is essential for...
Long-distance transport and control of spin waves through nanochannels is essential for integrated m...
Long-distance transport and control of spin waves through nanochannels is essential for integrated m...
We report experimental results on spin-wave propagation, transmission gap tuning, and mode conversio...
A one-dimensional magnonic crystal for forward volume spin waves (FV SWs) is demonstrated using eigh...
Quasicrystals are aperiodically ordered structures with unconventional rotational symmetry. Their pe...
| openaire: EC/H2020/812841/EU//POWERSPINWe present a comprehensive investigation of propagating spi...
| openaire: EC/H2020/812841/EU//POWERSPINWe present a comprehensive investigation of propagating spi...
Magnonic devices based on active manipulation of spin waves, provide a broad set of solutions to man...
Spin-waves are coherent excitations of magnetic moments. The frequency at which they oscillate can b...
This thesis reports on three recent experimental studies of microwave magnons in yttrium iron garnet...
This thesis reports on three recent experimental studies of microwave magnons in yttrium iron garnet...
Magnonic crystals (MCs) operate with spin waves (SW) in the microwave frequency range [1–8] and are ...
Magnons (spin waves, SWs) are elementary spin excitations in magnetically ordered materials. They ar...
Funding Information: This work was supported by the Academy of Finland (Grant Nos. 317918, 316857, 3...