Quantum state transfer between distant nodes is at the heart of quantum processing and quantum networking. Stimulated by this, we propose a scheme where one can achieve quantum state transfer with a high fidelity between sites in a cavity quantum optomechanical network. In our lattice, each individual site is composed of a localized mechanical mode which interacts with a laser-driven cavity mode via radiation pressure, while photons hop between neighboring sites. After diagonalization of the Hamiltonian of each cell, we show that the system can be reduced to an effective Hamiltonian of two decoupled bosonic chains, and therefore we can apply the well-known results in quantum state transfer together with an additional condition on the transf...
We theoretically explore a quantum memory using a single nanoparticle levitated in an optical dipole...
In this work, we analyze the enhancement of the transfer of the quantum correlations from squeezed l...
We present a protocol for transfer of an unknown quantum state. The protocol is based on a two-mode ...
We introduce a scheme to reconstruct an arbitrary quantum state of a mechanical oscillator network. ...
The search for experimental demonstration of the quantum behavior of macroscopic mechanical resonato...
We study the nonlinear driven dissipative quantum dynamics of an array of optomechanical systems. At...
We study an optomechanical system in which a microwave field and an optical field are coupled to the...
We consider a coupled-cavity array, where each cavity interacts with an atom under the rotating-wave...
The field of optomechanics provides us with several examples of quantum photon-phonon interface. In ...
We present a discrete-variable quantum teleportation scheme using pulsed optomechanics. In our propo...
We propose an experimentally feasible scheme for realizing quantum state transfer via the topologica...
Summarization: We propose a novel hybrid platform where solid-state spin qubits are coupled to the a...
We describe schemes for transferring quantum states between light fields and the motion of a trapped...
We present a scheme for quantum interfaces between nanomechanical and flying photon qubits...
Summarization: We demonstrate a scheme for quantum communication between the ends of an array of cou...
We theoretically explore a quantum memory using a single nanoparticle levitated in an optical dipole...
In this work, we analyze the enhancement of the transfer of the quantum correlations from squeezed l...
We present a protocol for transfer of an unknown quantum state. The protocol is based on a two-mode ...
We introduce a scheme to reconstruct an arbitrary quantum state of a mechanical oscillator network. ...
The search for experimental demonstration of the quantum behavior of macroscopic mechanical resonato...
We study the nonlinear driven dissipative quantum dynamics of an array of optomechanical systems. At...
We study an optomechanical system in which a microwave field and an optical field are coupled to the...
We consider a coupled-cavity array, where each cavity interacts with an atom under the rotating-wave...
The field of optomechanics provides us with several examples of quantum photon-phonon interface. In ...
We present a discrete-variable quantum teleportation scheme using pulsed optomechanics. In our propo...
We propose an experimentally feasible scheme for realizing quantum state transfer via the topologica...
Summarization: We propose a novel hybrid platform where solid-state spin qubits are coupled to the a...
We describe schemes for transferring quantum states between light fields and the motion of a trapped...
We present a scheme for quantum interfaces between nanomechanical and flying photon qubits...
Summarization: We demonstrate a scheme for quantum communication between the ends of an array of cou...
We theoretically explore a quantum memory using a single nanoparticle levitated in an optical dipole...
In this work, we analyze the enhancement of the transfer of the quantum correlations from squeezed l...
We present a protocol for transfer of an unknown quantum state. The protocol is based on a two-mode ...