We observe strong interlayer magnon--magnon coupling in an on-chip nanomagnonic device at room temperature. Ferromagnetic nanowire arrays are integrated on a 20-nm-thick yttrium iron garnet (YIG) thin film strip. Large anticrossing gaps up to 1.58 GHz are observed between the ferromagnetic resonance of the nanowires and the in--plane standing spin waves of the YIG film. Control experiments and simulations reveal that both the interlayer exchange coupling and the dynamical dipolar coupling contribute to the observed anticrossings. The coupling strength is tunable by the magnetic configuration, allowing the coherent control of magnonic devices
Long-distance transport and control of spin waves through nanochannels is essential for integrated m...
Manipulation of magnetization dynamics in nanoscale systems is critical for developing energy effici...
The critical step for future quantum industry demands realization of efficient information exchange ...
We observe strong interlayer magnon--magnon coupling in an on-chip nanomagnonic device at room tempe...
© 2020 American Physical Society. Ferromagnetic metals and insulators are widely used for generation...
Nanomagnets are widely used to store information in non-volatile spintronic devices. Spin waves can ...
We demonstrate theoretically a ∼350-fold local enhancement of the intensity of the in-plane microwav...
We theoretically investigate the interlayer dipolar and exchange couplings between an array of metal...
Coupled microwave photon-magnon hybrid systems offer promising applications by harnessing various ma...
By using the stripline Microwave Vector Network Analyzer Ferromagnetic Resonance and Pulsed Inductiv...
A leading nonlinear effect in magnonics is the interaction that splits a high-frequency magnon into ...
Magnon spintronics is a prosperous field that promises beyond-CMOS technology based on elementary ex...
Spin-wave (SW) modes are addressed which are confined in thin individual Ni 80Fe 20 nanowires with w...
Long-distance transport and control of spin waves through nanochannels is essential for integrated m...
Manipulation of magnetization dynamics in nanoscale systems is critical for developing energy effici...
The critical step for future quantum industry demands realization of efficient information exchange ...
We observe strong interlayer magnon--magnon coupling in an on-chip nanomagnonic device at room tempe...
© 2020 American Physical Society. Ferromagnetic metals and insulators are widely used for generation...
Nanomagnets are widely used to store information in non-volatile spintronic devices. Spin waves can ...
We demonstrate theoretically a ∼350-fold local enhancement of the intensity of the in-plane microwav...
We theoretically investigate the interlayer dipolar and exchange couplings between an array of metal...
Coupled microwave photon-magnon hybrid systems offer promising applications by harnessing various ma...
By using the stripline Microwave Vector Network Analyzer Ferromagnetic Resonance and Pulsed Inductiv...
A leading nonlinear effect in magnonics is the interaction that splits a high-frequency magnon into ...
Magnon spintronics is a prosperous field that promises beyond-CMOS technology based on elementary ex...
Spin-wave (SW) modes are addressed which are confined in thin individual Ni 80Fe 20 nanowires with w...
Long-distance transport and control of spin waves through nanochannels is essential for integrated m...
Manipulation of magnetization dynamics in nanoscale systems is critical for developing energy effici...
The critical step for future quantum industry demands realization of efficient information exchange ...