Multi-Wave Coherent Control of a Solid State Single Emitter
arXiv:1509.07690 · doi:10.1038/nphoton.2016.2
Abstract
Coherent control of individual two-level systems (TLSs) is at the basis of any implementation of quantum information. An impressive level of control is now achieved using nuclear, vacancies and charge spins. Manipulation of bright exciton transitions in semiconductor quantum dots (QDs) is less advanced, principally due to the sub-nanosecond dephasing. Conversely, owing to their robust coupling to light, one can apply tools of nonlinear spectroscopy to achieve all-optical command. Here, we report on the coherent manipulation of an exciton via multi-wave mixing. Specifically, we employ three resonant pulses driving a single InAs QD. The first two induce a four-wave mixing (FWM) transient, which is projected onto a six-wave mixing (SWM) depending on the delay and area of the third pulse, in agreement with analytical predictions. Such a switch enables to demonstrate the generation of SWM on a single emitter and to engineer the spectro-temporal shape of the coherent response originating from a TLS. These results pave the way toward multi-pulse manipulations of solid state qubits via implementing the NMR-like control schemes in the optical domain.
References in corpus (10)
- Coherent control of single spins in silicon carbide at room temperature
- Storing quantum information for 30 seconds in a nanoelectronic device
- Near-unity coupling efficiency of a quantum emitter to a photonic-crystal waveguide
- Phonon induced Rabi frequency renormalization of optically driven single InGaAs/GaAs quantum dots
- Quantum control of a spin qubit coupled to a photonic crystal cavity
- Environment-assisted quantum control of a solid-state spin via coherent dark states
- Measuring the photon coalescence time-window in the continuous-wave regime for resonantly driven semiconductor quantum dots
- Excitation spectroscopy of single quantum dots at tunable positive, neutral and negative charge states
- Radiative coupling of quantum dots in photonic crystal structures
- Highly directed emission from self-assembled quantum dots into guided modes in disordered photonic crystal waveguides
Cited by in corpus (23)
- Dynamics of excitons in individual InAs quantum dots revealed in four-wave mixing spectroscopy
- Non-Markovian features in semiconductor quantum optics: Quantifying the role of phonons in experiment and theory
- Nonlinear quantum dot optomechanics
- Coherent coupling of individual quantum dots measured with phase-referenced two-dimensional spectroscopy: photon echo versus double quantum coherence
- Coherent dynamics and mapping of excitons in single-layer MoSe and WSe at the homogeneous limit
- Resonance fluorescence spectral dynamics of an acoustically modulated quantum dot
- Harvesting, coupling and control of single exciton coherences in photonic waveguide antennas
- Photon echoes from (In,Ga)As quantum dots embedded in a Tamm-plasmon microcavity
- Photon echo from localized excitons in semiconductor nanostructures
- Rabi oscillations of a quantum dot exciton coupled to acoustic phonons: coherence and population readout
- Acoustic Phonon Sideband Dynamics During Polaron Formation in a Single Quantum Dot
- Entangled photon pairs from quantum dots embedded in a self-aligned cavity
- Local field effects in ultrafast light-matter interaction measured by pump-probe spectroscopy of monolayer MoSe
- High resolution two-dimensional optical spectroscopy of electron spins
- Exploring coherence of individual excitons in InAs quantum dots embedded in natural photonic defects: influence of the excitation intensity
- Heterogeneous integration of superconducting thin films and epitaxial semiconductor heterostructures with Lithium Niobate
- Controlled Coherent Coupling in a Quantum Dot Molecule Revealed by Ultrafast Four-Wave Mixing Spectroscopy
- Coherent dynamics of a single Mn-doped quantum dot revealed by four-wave mixing spectroscopy
- Fundamentals of heterodyne wave mixing spectroscopy: a tutorial
- Coherent Nonlinear Optical Response for High-Intensity Excitation
- Coherent photon coincidence spectroscopy of single quantum systems
- Efficient four-wave mixing at the nanofocus of integrated organic gap plasmon waveguides on silicon
- Excitation-pulse intensity mediated control of coherent nonlinear optical response of a V-type system