Micromagnetic simulations of magnetoelastic coupling in exchange-decoupled Co/Ni islets predict a 52 dB/mm change in SAW transmission at 3.8 GHz depending on the magnetic state of neighboring islets.
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Cryogenic GaAs SAW resonators achieve Q factors up to 28,000 in the GHz range via systematic geometry and orientation tuning, with mesa steps added to study scattering and dissipation for quantum acoustics applications.
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Magnetically Programmable Surface Acoustic Wave Filters: Device Concept and Predictive Modeling
Micromagnetic simulations of magnetoelastic coupling in exchange-decoupled Co/Ni islets predict a 52 dB/mm change in SAW transmission at 3.8 GHz depending on the magnetic state of neighboring islets.
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High-Q cryogenic surface acoustic wave resonators in the GHz range
Cryogenic GaAs SAW resonators achieve Q factors up to 28,000 in the GHz range via systematic geometry and orientation tuning, with mesa steps added to study scattering and dissipation for quantum acoustics applications.