Owing to their ability to generate non-classical light states, quantum dots (QDs) are very promising candidates for the large-scale implementation of quantum information technologies. However, the high photon collection efficiency demanded by these technologies may be impossible to reach for “standalone” semiconductor QDs, embedded in a high-refractive index medium. In this work a novel laser writing technique is presented, enabling the direct fabrication of a QD self-aligned—with a precision of ±30 nm—to a dielectric microsphere. The presence of the microsphere leads to an enhancement of the QD luminescence collection by a factor 7.3 ± 0.7 when an objective with 0.7 numerical aperture is employed. This technique exploits the possibility of...
Today, the world is on the verge of a new technological breakthrough that has been called the “secon...
International audienceQuantum dots (QDs) films or layers are extensively used for various photonic a...
The practical realisation of photonic quantum technologies on a solid-state platform implies the dev...
Owing to their ability to generate non-classical light states, quantum dots (QDs) are ideal candidat...
Breakthroughs in nanomaterials and nanoscience enable the development of novel photonic devices and ...
We report an experiment where InAs/GaAs self-organized Quantum Dots (QD) are coupled to the evanesce...
Sources of single and entangled photons on demand are attracting strong attention, in view of their ...
Comunicación presentada en el 3rd international Workshop Engineering of quantum emitter properties, ...
Semiconductor quantum dots (QDs) are fascinating systems for potential applications in quantum infor...
We have developed a process to mass-produce quantum dot micropillar cavities using direct-write lith...
The development of a quantum communication network will require sources that efficiently emit single...
A method for the fabrication of cadmium-free, photoluminescent (PL) quantum dot supracrystal microsp...
AbstractLaser structures with reduced dimensionality (beyond quantum wires) were first proposed to r...
We have registered the position of single InGaAs quantum dots using a cryogenic laser photolithograp...
The photonic nanojet generated by microsphere-based modulation of incident light has attracted much ...
Today, the world is on the verge of a new technological breakthrough that has been called the “secon...
International audienceQuantum dots (QDs) films or layers are extensively used for various photonic a...
The practical realisation of photonic quantum technologies on a solid-state platform implies the dev...
Owing to their ability to generate non-classical light states, quantum dots (QDs) are ideal candidat...
Breakthroughs in nanomaterials and nanoscience enable the development of novel photonic devices and ...
We report an experiment where InAs/GaAs self-organized Quantum Dots (QD) are coupled to the evanesce...
Sources of single and entangled photons on demand are attracting strong attention, in view of their ...
Comunicación presentada en el 3rd international Workshop Engineering of quantum emitter properties, ...
Semiconductor quantum dots (QDs) are fascinating systems for potential applications in quantum infor...
We have developed a process to mass-produce quantum dot micropillar cavities using direct-write lith...
The development of a quantum communication network will require sources that efficiently emit single...
A method for the fabrication of cadmium-free, photoluminescent (PL) quantum dot supracrystal microsp...
AbstractLaser structures with reduced dimensionality (beyond quantum wires) were first proposed to r...
We have registered the position of single InGaAs quantum dots using a cryogenic laser photolithograp...
The photonic nanojet generated by microsphere-based modulation of incident light has attracted much ...
Today, the world is on the verge of a new technological breakthrough that has been called the “secon...
International audienceQuantum dots (QDs) films or layers are extensively used for various photonic a...
The practical realisation of photonic quantum technologies on a solid-state platform implies the dev...