We directly investigate, by means of near-field spectroscopy, the spatial distribution of the optical cavity modes of 2D photonic crystalmicrocavities. Numerical simulations confirm that the photoluminescence maps of quantum dots embedded in the photonic structurequalitatively match the spatial modulation of the electric field intensity
An exciton confined within a quantum dot acts as a two-level quantum system, and is one of the most ...
We have investigated the optical properties of planar photonic crystal cavities formed by removing a...
The first solid state structures for cavity quantum electrodynamic studies were realized analog to e...
We directly investigate, by means of near-field spectroscopy, the spatial distribution of the optica...
We directly investigate, by means of near-field spectroscopy, the spatial distribution of the optica...
We report a study of single quantum dots inside photonic crystal cavities with a low-temperature sca...
We report the direct, room-temperature, near-field mapping and spectroscopy of the optical modes of ...
We report the direct, room-temperature, near-field mapping and spectroscopy of the optical modes of ...
The insertion of a metal-coated tip on the surface of a photonic crystal microcavity is used for sim...
Recent theories proposed a deep revision of the well-known expression for the Purcell factor, with c...
Funding Information: This work was supported by Swiss National Science Foundation and Academy of Fin...
We model the emission spectrum of a quantum dot embedded in a (e.g. photonic crystal) nanocavity, us...
We report on the realization of a rewritable and local source inside a Si-based photonic crystal mic...
Recently, the strong coupling regime between matter excitations in a Quantum Dot (QD) and a light mo...
Recent theories proposed a deep revision of the well-known expression for the Purcell factor, with c...
An exciton confined within a quantum dot acts as a two-level quantum system, and is one of the most ...
We have investigated the optical properties of planar photonic crystal cavities formed by removing a...
The first solid state structures for cavity quantum electrodynamic studies were realized analog to e...
We directly investigate, by means of near-field spectroscopy, the spatial distribution of the optica...
We directly investigate, by means of near-field spectroscopy, the spatial distribution of the optica...
We report a study of single quantum dots inside photonic crystal cavities with a low-temperature sca...
We report the direct, room-temperature, near-field mapping and spectroscopy of the optical modes of ...
We report the direct, room-temperature, near-field mapping and spectroscopy of the optical modes of ...
The insertion of a metal-coated tip on the surface of a photonic crystal microcavity is used for sim...
Recent theories proposed a deep revision of the well-known expression for the Purcell factor, with c...
Funding Information: This work was supported by Swiss National Science Foundation and Academy of Fin...
We model the emission spectrum of a quantum dot embedded in a (e.g. photonic crystal) nanocavity, us...
We report on the realization of a rewritable and local source inside a Si-based photonic crystal mic...
Recently, the strong coupling regime between matter excitations in a Quantum Dot (QD) and a light mo...
Recent theories proposed a deep revision of the well-known expression for the Purcell factor, with c...
An exciton confined within a quantum dot acts as a two-level quantum system, and is one of the most ...
We have investigated the optical properties of planar photonic crystal cavities formed by removing a...
The first solid state structures for cavity quantum electrodynamic studies were realized analog to e...