We report a photoluminescence imaging system for locating single quantum emitters with respect to alignment features. Samples are interrogated in a 4 K closed-cycle cryostat by a high numerical aperture (NA = 0.9, 100× magnification) objective that sits within the cryostat, enabling high efficiency collection of emitted photons without image distortions due to the cryostat windows. The locations of single InAs/GaAs quantum dots within a >50 μm × 50 μm field of view are determined with ≈4.5 nm uncertainty (one standard deviation) in a 1 s long acquisition. The uncertainty is determined through a combination of a maximum likelihood estimate for localizing the quantum dot emission, and a cross correlation method for determining the alignmen...
A method is presented for optically imaging the spatial distribution of semiconductor nanocrystals w...
Plasmonics offers the opportunity of tailoring the interaction of light with single quantum emitters...
Super-resolution localization microscopy is based on determining the positions of individual fluores...
We report a photoluminescence imaging system for locating single quantum emitters with respect to al...
We report a photoluminescence imaging system for locating single quantum emitters with respect to al...
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...
Self-assembled, epitaxially grown InAs/GaAs quantum dots (QDs) are promising semiconductor quantum e...
We have registered the position and wavelength of a single InGaAs quantum dot using an innovative cr...
Abstract We report optical positioning of single quantum dots (QDs) in planar distributed Bragg refl...
Single self-assembled InAs/GaAs quantum dots are a promising solid-state quantum technology, with wh...
[出版社版]The location of quantum dots (QDs) embedded in a GaAs matrix is successfully identified by mic...
We propose and demonstrate a technique combining micro-photoluminescence imaging with scanning photo...
We report on a combined photoluminescence imaging and atomic force microscopy study of single, isola...
Single-Molecule Localization Microscopy is an optical imaging paradigm which provides computational ...
A method is presented for optically imaging the spatial distribution of semiconductor nanocrystals w...
Plasmonics offers the opportunity of tailoring the interaction of light with single quantum emitters...
Super-resolution localization microscopy is based on determining the positions of individual fluores...
We report a photoluminescence imaging system for locating single quantum emitters with respect to al...
We report a photoluminescence imaging system for locating single quantum emitters with respect to al...
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...
Self-assembled, epitaxially grown InAs/GaAs quantum dots (QDs) are promising semiconductor quantum e...
We have registered the position and wavelength of a single InGaAs quantum dot using an innovative cr...
Abstract We report optical positioning of single quantum dots (QDs) in planar distributed Bragg refl...
Single self-assembled InAs/GaAs quantum dots are a promising solid-state quantum technology, with wh...
[出版社版]The location of quantum dots (QDs) embedded in a GaAs matrix is successfully identified by mic...
We propose and demonstrate a technique combining micro-photoluminescence imaging with scanning photo...
We report on a combined photoluminescence imaging and atomic force microscopy study of single, isola...
Single-Molecule Localization Microscopy is an optical imaging paradigm which provides computational ...
A method is presented for optically imaging the spatial distribution of semiconductor nanocrystals w...
Plasmonics offers the opportunity of tailoring the interaction of light with single quantum emitters...
Super-resolution localization microscopy is based on determining the positions of individual fluores...