We report measurements made at millikelvin temperatures of a superconducting coplanar waveguide resonator (CPWR) coupled to a sphere of yttrium-iron garnet. Systems hybridising collective spin excitations with microwave photons have recently attracted interest for their potential quantum information applications. In this experiment the non-uniform microwave field of the CPWR allows coupling to be achieved to many different magnon modes in the sphere. Calculations of the relative coupling strength of different mode families in the sphere to the CPWR are used to successfully identify the magnon modes and their frequencies. The measurements are extended to the quantum limit by reducing the drive power until, on average, less than one photon is...
We report the observation of strong coupling between the exchange-coupled spins in gallium-doped ytt...
By using the stripline Microwave Vector Network Analyzer Ferromagnetic Resonance and Pulsed Inductiv...
Cavity magnonics deals with the interaction of magnons — elementary excitations in magnetic material...
Coherent coupling between spin wave excitations (magnons) and microwave photons in a cavity may disc...
This thesis reports on three recent experimental studies of microwave magnons in yttrium iron garnet...
AbstractThe techniques of microwave quantum optics are applied to collective spin excitations in a m...
Collective magnetic excitation modes, magnons, can be coherently coupled to microwave photons in the...
The spin resonance of electrons can be coupled to a microwave cavity mode to obtain a photon-magnon ...
This thesis reports on recent results which pave the way for future experiments in the emerging fiel...
Coupled microwave photon-magnon hybrid systems offer promising applications by harnessing various ma...
Using a sub-millimetre sized YIG (Yttrium Iron Garnet) sphere mounted in a magnetic field-focusing c...
Hybrid systems combining magnons and superconducting quantum circuits have attracted increasing inte...
International audienceA systematic study of the coupling at room temperature between ferromagnetic r...
The critical step for future quantum industry demands realization of efficient information exchange ...
We demonstrate direct probing of strong magnon-photon coupling using Brillouin light scattering spec...
We report the observation of strong coupling between the exchange-coupled spins in gallium-doped ytt...
By using the stripline Microwave Vector Network Analyzer Ferromagnetic Resonance and Pulsed Inductiv...
Cavity magnonics deals with the interaction of magnons — elementary excitations in magnetic material...
Coherent coupling between spin wave excitations (magnons) and microwave photons in a cavity may disc...
This thesis reports on three recent experimental studies of microwave magnons in yttrium iron garnet...
AbstractThe techniques of microwave quantum optics are applied to collective spin excitations in a m...
Collective magnetic excitation modes, magnons, can be coherently coupled to microwave photons in the...
The spin resonance of electrons can be coupled to a microwave cavity mode to obtain a photon-magnon ...
This thesis reports on recent results which pave the way for future experiments in the emerging fiel...
Coupled microwave photon-magnon hybrid systems offer promising applications by harnessing various ma...
Using a sub-millimetre sized YIG (Yttrium Iron Garnet) sphere mounted in a magnetic field-focusing c...
Hybrid systems combining magnons and superconducting quantum circuits have attracted increasing inte...
International audienceA systematic study of the coupling at room temperature between ferromagnetic r...
The critical step for future quantum industry demands realization of efficient information exchange ...
We demonstrate direct probing of strong magnon-photon coupling using Brillouin light scattering spec...
We report the observation of strong coupling between the exchange-coupled spins in gallium-doped ytt...
By using the stripline Microwave Vector Network Analyzer Ferromagnetic Resonance and Pulsed Inductiv...
Cavity magnonics deals with the interaction of magnons — elementary excitations in magnetic material...