Summarization: We propose a novel hybrid platform where solid-state spin qubits are coupled to the acoustic modes of a two-dimensional array of optomechanical (OM) nano cavities. Previous studies of coupled OM cavities have shown that in the presence of strong optical driving fields, the interplay between the photon-phonon interaction and their respective inter-cavity hopping allows the generation of topological phases of sound and light. In particular, the mechanical modes can enter a Chern insulator phase where the time-reversal symmetry is broken. In this context, we exploit the robust acoustic edge states as a chiral phononic waveguide and describe a state transfer protocol between spin qubits located in distant cavities. We analyze the...
Optomechanical systems offer new opportunities in quantum information processing and quantum sensing...
241 pagesSupplemental file(s) description: Animation of experiment.Diamond nitrogen-vacancy (NV) cen...
A fully functional quantum computer must contain at least two important components: a quantum memory...
We propose a novel hybrid platform where solid-state spin qubits are coupled to the acoustic modes o...
Topological states of matter are particularly robust, since they exploit global features of a materi...
Phononic quantum networks feature distinct advantages over photonic networks for on-chip quantum com...
Current proposals for the design of quantum computer architectures include combining different quant...
Quantum state transfer between distant nodes is at the heart of quantum processing and quantum netwo...
We introduce a hybrid tripartite quantum system for strong coupling between a semiconductor spin, a ...
Exotic aspects of quantum mechanics, such as quantum entanglement, can be exploited to solve computa...
We propose an experimentally feasible scheme for realizing quantum state transfer via the topologica...
AbstractWe introduce a method for high-fidelity quantum state transduction between a superconducting...
Sound (mechanical vibrations) and light interact via radiation forces, such as radiation pressure. I...
The search for experimental demonstration of the quantum behavior of macroscopic mechanical resonato...
A topological state with protected propagation of elastic waves is achieved by appropriately enginee...
Optomechanical systems offer new opportunities in quantum information processing and quantum sensing...
241 pagesSupplemental file(s) description: Animation of experiment.Diamond nitrogen-vacancy (NV) cen...
A fully functional quantum computer must contain at least two important components: a quantum memory...
We propose a novel hybrid platform where solid-state spin qubits are coupled to the acoustic modes o...
Topological states of matter are particularly robust, since they exploit global features of a materi...
Phononic quantum networks feature distinct advantages over photonic networks for on-chip quantum com...
Current proposals for the design of quantum computer architectures include combining different quant...
Quantum state transfer between distant nodes is at the heart of quantum processing and quantum netwo...
We introduce a hybrid tripartite quantum system for strong coupling between a semiconductor spin, a ...
Exotic aspects of quantum mechanics, such as quantum entanglement, can be exploited to solve computa...
We propose an experimentally feasible scheme for realizing quantum state transfer via the topologica...
AbstractWe introduce a method for high-fidelity quantum state transduction between a superconducting...
Sound (mechanical vibrations) and light interact via radiation forces, such as radiation pressure. I...
The search for experimental demonstration of the quantum behavior of macroscopic mechanical resonato...
A topological state with protected propagation of elastic waves is achieved by appropriately enginee...
Optomechanical systems offer new opportunities in quantum information processing and quantum sensing...
241 pagesSupplemental file(s) description: Animation of experiment.Diamond nitrogen-vacancy (NV) cen...
A fully functional quantum computer must contain at least two important components: a quantum memory...