Fundamentals of optical non-reciprocity based on optomechanical coupling
arXiv:1612.07375 · doi:10.1103/PhysRevApplied.7.064014
Abstract
Optical isolation, non-reciprocal phase transmission and topological phases for light based on synthetic gauge fields have been raising significant interest in the recent literature. Cavity-optomechanical systems that involve two optical modes coupled to a common mechanical mode form an ideal platform to realize these effects, providing the basis for various recent demonstrations of optomechanically induced non-reciprocal light transmission. Here, we establish a unifying theoretical framework to analyze optical non-reciprocity and breaking of time-reversal symmetry in multimode optomechanical systems. We highlight two general scenarios to achieve isolation, relying on either optical or mechanical losses. Depending on the loss mechanism, our theory defines the ultimate requirements for optimal isolation and the available operational bandwidth in these systems. We also analyze the effect of sideband resolution on the performance of optomechanical isolators, highlighting the fact that non-reciprocity can be preserved even in the unresolved sideband regime. Our results provide general insights into a broad class of parametrically modulated non-reciprocal devices, paving the way towards optimal non-reciprocal systems for low-noise integrated nanophotonics.
42 pages, 15 figures
References in corpus (9)
- Optomechanically induced transparency
- Electromagnetically Induced Transparency and Slow Light with Optomechanics
- Nonreciprocal Photon Transmission and Amplification via Reservoir Engineering
- Non-Reciprocal Brillouin Scattering Induced Transparency
- Nonreciprocity and magnetic-free isolation based on optomechanical interactions
- Brillouin scattering induced transparency and non-reciprocal light storage
- Noiseless nonreciprocity in a parametric active device
- Nonreciprocal microwave signal processing with a Field-Programmable Josephson Amplifier
- Graph-based analysis of nonreciprocity in coupled-mode systems
Cited by in corpus (38)
- Nonreciprocity and Unidirectional Invisibility in Cavity Magnonics
- Hybrid magnonics: physics, circuits and applications for coherent information processing
- Controlling phonons and photons at the wavelength-scale: silicon photonics meets silicon phononics
- Nonreciprocal Phonon Laser
- Optical circulation in a multimode optomechanical resonator
- Synthetic gauge field in a single optomechanical resonator
- Non-reciprocal sound propagation in space-time modulated media
- Manipulating the flow of thermal noise in quantum devices
- Nonreciprocal photon blockade via quadratic optomechanical coupling
- Transmission Nonreciprocity in a Mutually Coupled Circulating Structure
- Optical unidirectional amplification in a three-mode optomechanical system
- Resonantly enhanced nonreciprocal silicon Brillouin amplifier
- Directional amplifier in an optomechanical system with optical gain
- Single-photon nonreciprocal transport in one-dimensional coupled-resonator waveguides
- Non-Reciprocal and Collimated Surface Plasmons in Drift-biased Graphene Metasurfaces
- Optomechanical transistor with mechanical gain
- Perfect Optical Nonreciprocity in a Double-Cavity Optomechanical System
- Nonreciprocal Elasticity
- Transfer matrix method for the analysis of space-time modulated media and systems
- Nonreciprocal and non-Hermitian material response inspired by semiconductor transistors
- Nonreciprocal single-photon frequency converter via multiple semi-infinite coupled-resonator waveguides
- Nonreciprocal Multi-mode and Indirect Couplings in Cavity Magnonics
- Optomechanically Induced Birefringence and Faraday Effect
- Loschmidt echo and fidelity decay near an exceptional point
- Nonreciprocal conversion between radio-frequency and optical photons with an optoelectromechanical system
- Multimode interference induced optical nonreciprocity and routing in an optical microcavity
- Switchable bipartite and genuine tripartite entanglement via an optoelectromechanical interface
- Circumventing Magnetic Reciprocity: a Diode for Magnetic Fields
- Parity-dependent unidirectional and chiral photon transfer in reversed-dissipation cavity optomechanics
- High-Purity Entanglement of Hot Propagating Modes Using Nonreciprocity
- Low Noise Opto-Electro-Mechanical Modulator for RF-to-Optical Transduction in Quantum Communications
- Engineering Optomechanically Induced Transparency by coupling a qubit to a spinning resonator
- Nonreciprocity in microwave optomechanical circuits
- Scattering theory from artificial piezoelectric-like meta-atoms and molecules
- Nonreciprocity of intense light field and weak quantum signal in optomechanical systems with three-mode parametric interactions
- Multiterminal Nonreciprocal Routing in an Optomechanical Plaquette via Synthetic Magnetism
- Optomechanics for quantum technologies
- Exploring Nonreciprocal Noise Transfer under Onsager-Casimir Symmetry in Synthetic-Field Optomechanics