We propose an experimentally feasible scheme for realizing quantum state transfer via the topological edge states in a one-dimensional cavity-magnon lattice. We find that the cavity-magnon system can be mapped analytically into the generalized Su-Schrieffer-Heeger model with tunable cavity-magnon coupling. It can be shown that the edge state can be served as a quantum channel to realize the photonic and magnonic state transfers by adjusting the cavity-cavity coupling strength. Further, our scheme can realize the quantum state transfer between photonic state and magnonic state by changing the amplitude of the intracell hopping. With a numerical simulation, we quantitatively show that the photonic, magnonic and magnon-to-photon state transfer...
Quantum state transfer is one of the basic tasks in quantum information processing. We here propose ...
Magnon-photon coupling inside a cavity has been experimentally realized and has attracted significan...
We propose a scheme to simulate topological physics within a single degenerate cavity, whose modes a...
We show how a quantum state in a microwave cavity mode can be transferred to and stored in a phononi...
Quantum state transfer between distant nodes is at the heart of quantum processing and quantum netwo...
Summarization: We propose a novel hybrid platform where solid-state spin qubits are coupled to the a...
We show that the one-way channel formalism of quantum optics has a physical realisation in electroni...
We show that the one-way channel formalism of quantum optics has a physical realization in electroni...
In the emerging field of cavity optomagnonics, photons are coupled coherently to magnons in solid-st...
The study of cavity magnonics and topological insulators has made significant advances over the past...
We show how to prepare a steady-state entangled state between magnons and optical photons in an opto...
12 pages, 5 figuresInternational audienceControlling the topological properties of quantum matter is...
We propose a hybrid cavity magnomechanical system to realize and transfer the bipartite entanglement...
Cavity magnomechanics provides a readily-controllable hybrid system, that consisted of cavity mode, ...
We explore the physics of topological lattice models in c-QED architectures for arbitrary coupling s...
Quantum state transfer is one of the basic tasks in quantum information processing. We here propose ...
Magnon-photon coupling inside a cavity has been experimentally realized and has attracted significan...
We propose a scheme to simulate topological physics within a single degenerate cavity, whose modes a...
We show how a quantum state in a microwave cavity mode can be transferred to and stored in a phononi...
Quantum state transfer between distant nodes is at the heart of quantum processing and quantum netwo...
Summarization: We propose a novel hybrid platform where solid-state spin qubits are coupled to the a...
We show that the one-way channel formalism of quantum optics has a physical realisation in electroni...
We show that the one-way channel formalism of quantum optics has a physical realization in electroni...
In the emerging field of cavity optomagnonics, photons are coupled coherently to magnons in solid-st...
The study of cavity magnonics and topological insulators has made significant advances over the past...
We show how to prepare a steady-state entangled state between magnons and optical photons in an opto...
12 pages, 5 figuresInternational audienceControlling the topological properties of quantum matter is...
We propose a hybrid cavity magnomechanical system to realize and transfer the bipartite entanglement...
Cavity magnomechanics provides a readily-controllable hybrid system, that consisted of cavity mode, ...
We explore the physics of topological lattice models in c-QED architectures for arbitrary coupling s...
Quantum state transfer is one of the basic tasks in quantum information processing. We here propose ...
Magnon-photon coupling inside a cavity has been experimentally realized and has attracted significan...
We propose a scheme to simulate topological physics within a single degenerate cavity, whose modes a...