Quantum networking of microwave photons using optical fibers
arXiv:1403.7056 · doi:10.1103/PhysRevA.90.012324
Abstract
We describe an adiabatic state transfer mechanism that allows for high-fidelity transfer of a microwave quantum state from one cavity to another through an optical fiber. The conversion from microwave frequency to optical frequency is enabled by an optomechanical transducer. The transfer process utilizes a combined dark state of the mechanical oscillator and fiber modes, making it robust against both mechanical and fiber loss. We anticipate this scheme being an enabling component of a hybrid quantum computing architecture consisting of superconducting qubits with optical interconnects.
9 pages, 4 figures. Replaced with published version
References in corpus (14)
- Sideband Cooling Micromechanical Motion to the Quantum Ground State
- Quantum Theory of Cavity-Assisted Sideband Cooling of Mechanical Motion
- Observation of strong coupling between a micromechanical resonator and an optical cavity field
- Cavity Optomechanics
- Resolved Sideband Cooling of a Micromechanical Oscillator
- Optical detection of radio waves through a nanomechanical transducer
- Coherent optical wavelength conversion via cavity-optomechanics
- Opto-mechanical transducers for long-distance quantum communication
- Distributed quantum computation via optical fibres
- Quantum Optomechanics - throwing a glance
- Dynamical Backaction of Microwave Fields on a Nanomechanical Oscillator
- Optical wavelength conversion of quantum states with optomechanics
- Optomechanical sideband cooling of a micromechanical oscillator close to the quantum ground state
- Fidelity of Fock-state-encoded qubits subjected to continuous variable Gaussian processes
Cited by in corpus (12)
- Deterministic quantum state transfer between remote qubits in cavities
- Measurement-Induced Long-Distance Entanglement of Superconducting Qubits using Optomechanical Transducers
- Spatially Adiabatic Frequency Conversion in Optoelectromechanical Arrays
- Efficient microwave frequency conversion mediated by the vibrational motion of a silicon nitride nanobeam oscillator
- Intermittency in an Optomechanical Cavity Near a Subcritical Hopf Bifurcation
- Universal distributed quantum computing on superconducting qutrits with dark photons
- Optomechanical Entanglement of Remote Microwave Cavities
- Time Resolved Phase Space Tomography of an Optomechanical Cavity
- Nonlocal nonreciprocal optomechanical circulator
- Improving quantum state transfer: Correcting non-Markovian and distortion effects
- Universal deterministic quantum operations in microwave quantum links
- Reversible optical-microwave quantum conversion assisted by optomechanical dynamically-dark modes