Cavity mediated manipulation of distant spin currents using cavity-magnon-polariton
arXiv:1706.00347 · doi:10.1103/PhysRevLett.118.217201
Abstract
Using electrical detection of a strongly coupled spin-photon system comprised of a microwave cavity mode and two magnetic samples, we demonstrate the long distance manipulation of spin currents. This distant control is not limited by the spin diffusion length, instead depending on the interplay between the local and global properties of the coupled system, enabling systematic spin current control over large distance scales (several centimeters in this work). This flexibility opens the door to improved spin current generation and manipulation for cavity spintronic devices.
5 pages, 3 figures
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- Circulating cavity magnon polaritons
- Nonlinear Spin Currents
- Transient Response of the Cavity-Magnon-Polariton
- Thermal induced monochromatic microwave generation in magnon-polariton
- Quantum Simulation of the Fermion-Boson Composite Quasi-Particles with a Driven Qubit-Magnon Hybrid Quantum System
- Electrical detection of magnon-photon interaction via auxiliary spin wave mode