The detection of magnons and their quantum properties, especially in antiferromagnetic (AFM) materials, is a substantial step to realize many ambitious advances in the study of nanomagnetism and the development of energy efficient quantum technologies. The recent development of hybrid systems based on superconducting circuits provides the possibility to engineer quantum sensors that exploit different degrees of freedom. Here, we examine the magnon-photon-transmon hybridization based on bipartite AFM materials, which gives rise to an effective coupling between a transmon qubit and magnons in a bipartite AFM. We demonstrate how magnon modes, their chiralities, and quantum properties, such as nonlocality and two-mode magnon entanglement in bip...
We theoretically explore nonlinearities of ferromagnets in microwave cavities in the classical and q...
The critical step for future quantum industry demands realization of efficient information exchange ...
The field of quantum computation and simulation has its origins in the early 1980s, when the limitat...
The detection of magnons and their quantum properties, especially in antiferromagnetic (AFM) materia...
Quantum magnonics is an emerging research field, with great potential for applications in magnon bas...
Quantum technology has made tremendous strides over the past two decades with remarkable advances in...
Magnons are being currently developed as qubits for quantum storage and information processing. Here...
AbstractThe techniques of microwave quantum optics are applied to collective spin excitations in a m...
We propose to directly and quantum-coherently couple a superconducting transmon qubit to magnons - t...
We investigate the parameter estimation in a magnon–cavity–magnon coupled system. PT symmetrical two...
Magnon-photon coupling inside a cavity has been experimentally realized and has attracted significan...
Coupled microwave photon-magnon hybrid systems offer promising applications by harnessing various ma...
The ability to manipulate entanglement between multiple spatially separated qubits is essential for ...
Continuous variable entanglement between magnon modes in Heisenberg antiferromagnets with Dzyaloshin...
We investigate the correlations of magnons inside a nanomagnet and identify a regime of parameters w...
We theoretically explore nonlinearities of ferromagnets in microwave cavities in the classical and q...
The critical step for future quantum industry demands realization of efficient information exchange ...
The field of quantum computation and simulation has its origins in the early 1980s, when the limitat...
The detection of magnons and their quantum properties, especially in antiferromagnetic (AFM) materia...
Quantum magnonics is an emerging research field, with great potential for applications in magnon bas...
Quantum technology has made tremendous strides over the past two decades with remarkable advances in...
Magnons are being currently developed as qubits for quantum storage and information processing. Here...
AbstractThe techniques of microwave quantum optics are applied to collective spin excitations in a m...
We propose to directly and quantum-coherently couple a superconducting transmon qubit to magnons - t...
We investigate the parameter estimation in a magnon–cavity–magnon coupled system. PT symmetrical two...
Magnon-photon coupling inside a cavity has been experimentally realized and has attracted significan...
Coupled microwave photon-magnon hybrid systems offer promising applications by harnessing various ma...
The ability to manipulate entanglement between multiple spatially separated qubits is essential for ...
Continuous variable entanglement between magnon modes in Heisenberg antiferromagnets with Dzyaloshin...
We investigate the correlations of magnons inside a nanomagnet and identify a regime of parameters w...
We theoretically explore nonlinearities of ferromagnets in microwave cavities in the classical and q...
The critical step for future quantum industry demands realization of efficient information exchange ...
The field of quantum computation and simulation has its origins in the early 1980s, when the limitat...