Droplet Epitaxy of Semiconductor Nanostructures for Quantum Photonic Devices
arXiv:2103.15083 · doi:10.1038/s41563-019-0355-y
Abstract
The long dreamed quantum internet would consist of a network of quantum nodes (solid-state or atomic systems) linked by flying qubits, naturally based on photons, travelling over long distances at the speed of light, with negligible decoherence. A key component is a light source, able to provide single or entangled photon pairs. Among the different platforms, semiconductor quantum dots are very attractive, as they can be integrated with other photonic and electronic components in miniaturized chips. In the early 1990s two approaches were developed to synthetize self-assembled epitaxial semiconductor quantum dots (QDs), or artificial atoms, namely the Stranski-Krastanov (SK) and the droplet epitaxy (DE) method. Because of its robustness and simplicity, the SK method became the workhorse to achieve several breakthroughs in both fundamental and technological areas. The need for specific emission wavelengths or structural and optical properties has nevertheless motivated further research on the DE method and its more recent development, the local-droplet-etching (LDE), as complementary routes to obtain high quality semiconductor nanostructures. The recent reports on the generation of highly entangled photon pairs, combined with good photon indistinguishability, suggest that DE and LDE QDs may complement (and sometime even outperform) conventional SK InGaAs QDs as quantum emitters. We present here a critical survey of the state of the art of DE and LDE, highlighting the advantages and weaknesses, the obtained achievements and the still open challenges, in view of applications in quantum communication and technology.
26 pages, 5 figures
References in corpus (15)
- The Quantum Internet
- Experimental quantum teleportation
- Quantum nature of a strongly-coupled single quantum dot-cavity system
- Entangled Photon Pairs from Semiconductor Quantum Dots
- Device-independent quantum key distribution secure against collective attacks
- Size-dependent fine-structure splitting in self-organized InAs/GaAs quantum dots
- Improved fidelity of triggered entangled photons from single quantum dots
- Coherence of an Entangled Exciton-Photon State
- Phase noise measurements in long fiber interferometers for quantum repeaters applications
- Engineering of selective carrier injection in patterned arrays of single-quantum-dot entangled photon light-emitting diodes
- Quantum optics: Push-button photon entanglement
- Non post-selected indistinguishable single photons generated by a quantum dot under resonant excitation
- On-chip generation and guiding of quantum light from a site-controlled quantum dot
- Satellite-Based Entanglement Distribution Over 1200 kilometers
- Vanishing fine structure splittings in telecom wavelength quantum dots grown on (111)A surfaces by droplet epitaxy
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- Telecom-wavelength InAs QDs with low fine structure splitting grown by droplet epitaxy on GaAs(111)A vicinal substrates
- Large-Range Frequency Tuning of a Narrow-Linewidth Quantum Emitter
- Nanohole etching in AlGaSb with Ga droplets
- Strain-free GaSb quantum dots as single-photon sources in the telecom S-band
- Beyond the four-level model: Dark and hot states in quantum dots degrade photonic entanglement
- GaAs quantum dots under quasi-uniaxial stress: experiment and theory
- Fine structure splitting analysis of cavity-enhanced telecom-wavelength InAs quantum dots grown on a GaAs(111)A vicinal substrate
- Hyperfine-interaction limits polarization entanglement of photons from semiconductor quantum dots
- Reentrant behavior of the density vs temperature of indium islands on GaAs(111)A
- Quantum non-demolition measurement of an electron spin qubit through its low-energy many-body spin environment
- Single quantum dot selection and tailor-made photonic device integration using nanoscale focus pinspot
- Many-Body Entanglement in Solid-State Emitters
- Quantum dots as potential sources of strongly entangled photons for quantum networks
- A Concise Primer on Solid-State Quantum Emitters
- Growth mechanisms of GaN/GaAs nanostructures by droplet epitaxy explained by complementary experiments and simulations
- Deep learning neural network for approaching Schrödinger problems with arbitrary two-dimensional confinement
- Effect of gallium termination on InGaAs wetting layer properties in droplet epitaxy InGaAs quantum dots
- Selective Preparation of Collective States in Coupled Quantum Emitters Using the SUPER Excitation Scheme
- Mechanisms and Opportunities for Tunable High-Purity Single Photon Emitters: A Review of Hybrid Perovskites and Prospects for Bright Squeezed Vacuum
- An intuitive scheme for the restoration of entanglement for polarization-entangled photons emitted from quantum dots with non-vanishing fine structure splitting
- Quantum Fourier transform spectroscopy of biexciton