We have registered the position of single InGaAs quantum dots using a cryogenic laser photolithography technique. This is an important advance towards the reproducible fabrication of solid-state cavity quantum electrodynamic devices, a key requirement for commercial exploitation of quantum information processing. The quantum dot positions were registered with an estimated accuracy of 50 nm by fabricating metal alignment markers around them. Photoluminescence spectra from quantum dots before and after marker fabrication were identical except for a small redshift (∼1 nm), probably introduced during the reactive ion etching. © 2006 American Institute of Physics
Owing to their ability to generate non-classical light states, quantum dots (QDs) are very promising...
The fabrication of high-performance solid-state silicon quantum-devices requires high resolution pat...
In this paper, InGaAs quantum dots with an adjusting InGaAlAs layer underneath are grown on (n 1 1)A...
We have registered the position of single InGaAs quantum dots using a cryogenic laser photolithograp...
We have registered the position and wavelength of a single InGaAs quantum dot using an innovative cr...
We have registered the position and wavelength of a single InGaAs quantum dot using an innovative cr...
We discuss a novel technique to register the spatial and spectral characteristics of a single quantu...
We report a photoluminescence imaging system for locating single quantum emitters with respect to al...
We propose and demonstrate a technique combining micro-photoluminescence imaging with scanning photo...
We report a photoluminescence imaging system for locating single quantum emitters with respect to al...
The development of a quantum communication network will require sources that efficiently emit single...
We describe a lithographic process for the fabrication of small size optical apertures, together wit...
Abstract—We report on the fabrication and characterization of an edge-emitting semiconductor laser w...
The practical realisation of photonic quantum technologies on a solid-state platform implies the dev...
Porous silica matricies were patterned with CdS quantum dots via x-ray, ultraviolet radiation, and i...
Owing to their ability to generate non-classical light states, quantum dots (QDs) are very promising...
The fabrication of high-performance solid-state silicon quantum-devices requires high resolution pat...
In this paper, InGaAs quantum dots with an adjusting InGaAlAs layer underneath are grown on (n 1 1)A...
We have registered the position of single InGaAs quantum dots using a cryogenic laser photolithograp...
We have registered the position and wavelength of a single InGaAs quantum dot using an innovative cr...
We have registered the position and wavelength of a single InGaAs quantum dot using an innovative cr...
We discuss a novel technique to register the spatial and spectral characteristics of a single quantu...
We report a photoluminescence imaging system for locating single quantum emitters with respect to al...
We propose and demonstrate a technique combining micro-photoluminescence imaging with scanning photo...
We report a photoluminescence imaging system for locating single quantum emitters with respect to al...
The development of a quantum communication network will require sources that efficiently emit single...
We describe a lithographic process for the fabrication of small size optical apertures, together wit...
Abstract—We report on the fabrication and characterization of an edge-emitting semiconductor laser w...
The practical realisation of photonic quantum technologies on a solid-state platform implies the dev...
Porous silica matricies were patterned with CdS quantum dots via x-ray, ultraviolet radiation, and i...
Owing to their ability to generate non-classical light states, quantum dots (QDs) are very promising...
The fabrication of high-performance solid-state silicon quantum-devices requires high resolution pat...
In this paper, InGaAs quantum dots with an adjusting InGaAlAs layer underneath are grown on (n 1 1)A...