Photon blockade effect in optomechanical systems.
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Summary
The results predict the appearance of nonclassical photon correlations in the combined strong coupling and sideband resolved regime and provide a first detailed understanding of photon-photon interactions in strong coupling optomechanics.
- Type
- article
- Published
- 2011-02-01
- Cited by
- 549
- References
- 37
- Access
- Open access
- OpenAlex
- https://openalex.org/W2001094172
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:33882705
Keywords
Photon, Physics, Blockade, Quantum mechanics, Biology
References
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- Dynamical multistability induced by radiation pressure in high-finesse micromechanical optical cavities.
- Preparation of nonclassical states in cavities with a moving mirror
- Observation of strong coupling between a micromechanical resonator and an optical cavity field
Cited by
- Nonperturbative approach to circuit quantum electrodynamics.
- Cooling photon-pressure circuits into the quantum regime
- Tunable photon blockade in a hybrid system consisting of an optomechanical device coupled to a two-level system
- Chip-based photonic sensors for metrology and applications
- Tunable Optomechanically Induced Absorption in a Hybrid Optomechanical System
- Quantum nonlinear optics — photon by photon
- PT-Symmetry-Breaking Chaos in Optomechanics.
- A Controlled Phase Gate Between a Single Atom and an Optical Photon
- Cavity optomechanics mediated by a quantum two-level system
- Enhanced electromechanical coupling of a nanomechanical resonator to coupled superconducting cavities
- Optomechanics with Levitating Dielectrics: Theory and Protocols
- Using Mechanical Oscillators for Transduction and Memory of Quantum States
- Dicke‐type phase transition in a multimode optomechanical system
- Effective nonlinear interactions in circuit QED and optomechanical setups
- Second-order quantum nonlinear optical processes in single graphene nanostructures and arrays
- Ponderomotive light squeezing with atomic cavity optomechanics
- Quantum Optomechanics with Silicon Nanostructures
- Diamond as a material for monolithically integrated optical and optomechanical devices
- From membrane‐in‐the‐middle to mirror‐in‐the‐middle with a high‐reflectivity sub‐wavelength grating
- Fast optical cooling of a nanomechanical cantilever by a dynamical Stark-shift gate