Probing the ladder of dressed states and nonclassical light generation in quantum dot-cavity QED
arXiv:1106.1926 · doi:10.1103/PhysRevA.85.041801
Abstract
We investigate the photon induced tunneling phenomena in a photonic crystal cavity containing a strongly coupled quantum dot and describe how this tunneling can be used to generate photon states consisting mainly of a particular Fock state. Additionally, we study experimentally the photon-induced tunneling as a function of excitation laser power and frequency and show the signature of second rung of the Jaynes-Cummings Hamiltonian in the observed photon-statistics.
References in corpus (3)
Cited by in corpus (44)
- Nonreciprocal Photon Blockade
- Loss-enabled sub-Poissonian light generation in a bimodal nanocavity
- Two-photon and three-photon blockades in driven nonlinear systems
- Coherent generation of nonclassical light on chip via detuned photon blockade
- Single-photon blockade in doubly resonant nanocavities with second-order nonlinearity
- Tunable photon blockade in a hybrid system consisting of an optomechanical device coupled to a two-level system
- Quantum Interference Induced Photon Blockade in a Coupled Single Quantum Dot-Cavity System
- Tunable multiphonon blockade in coupled nanomechanical resonators
- Design and analysis of photonic crystal coupled cavity arrays for quantum simulation
- Cavity Quantum Electrodynamics with a Single Quantum Dot Coupled to a Photonic Molecule
- Multiphoton blockade in the two-photon Jaynes-Cummings model
- Coherent polariton dynamics in coupled highly-dissipative cavity quantum electrodynamics
- Non-classical higher-order photon correlations with a quantum dot strongly coupled to a photonic-crystal nanocavity
- State-dependent photon blockade via quantum-reservoir engineering
- Two-photon blockade and photon-induced tunneling generated by squeezing
- Full photon statistics of a light beam transmitted through an optomechanical system
- Climbing the Jaynes-Cummings ladder by photon counting
- Cavity nonlinear optics with layered materials
- Distilling one, two and entangled pairs of photons from a quantum dot with cavity QED effects and spectral filtering
- Two-photon transport through a waveguide coupling to a whispering gallery resonator containing an atom and photon-blockade effect
- Theory of pore-driven and end-pulled polymer translocation dynamics through a nanopore: An overview
- Multi-output microwave single-photon source using superconducting circuits with longitudinal and transverse couplings
- Purification of a single photon nonlinearity
- Coupling an electron spin in a semiconductor quantum dot to an optical nano-cavity
- Resonance fluorescence from an asymmetric quantum dot dressed by a bichromatic electromagnetic field
- Strong Photon Blockade Mediated by Optical Stark Shift in a Single-Atom-Cavity System
- Quantum Zeno effect and nonclassicality in a PT symmetric system of coupled cavities
- Strong photon antibunching in weakly nonlinear two-dimensional exciton-polaritons
- Tuning the Photon Statistics of a Strongly Coupled Nanophotonic System
- Critical Theory for the Breakdown of Photon Blockade
- Probing nonclassicality in an optically-driven cavity with two atomic ensembles
- Exact -body representation of the Jaynes-Cummings interaction in the dressed basis: Insight into many-body phenomena with light
- Deterministic subtraction of single photons based on a coupled single quantum dot-cavity system
- Hybrid photon-phonon blockade
- Tunable photon-photon correlations in waveguide QED systems with giant atoms
- Engineering a squeezed phonon reservoir with a bichromatic driving of a quantum dot
- Strong coupling of two quantum emitters to a single light mode: the dissipative Tavis-Cummings ladder
- Nonequilibrium dynamics of the Jaynes-Cummings dimer
- Non-Gaussian features from Excited Squeezed Vacuum State
- Visualizing the breakdown of quantum multimodality in coherently driven light-matter interaction
- Single site-controlled inverted pyramidal InGaAs QD-nanocavity operating at the onset of the strong coupling regime
- Optimal condition to probe strong coupling of two-dimensional excitons and zero-dimensional cavity modes
- Optimal Photon blockade on the maximal atomic coherence
- The Observation of hyperradiance accompanied by enhanced entanglement in a hybrid optomechanical system