A novel technique for the fabrication of photonic crystal (PC) nanocavities coupled with colloidal nanocrystals is presented. A waveguiding resist membrane embedding highly emitting dot-in-a-rod nanocrystals was patterned through e-beam lithography and released through wet etching process. The proposed approach makes the PC structure independent of fabrication imperfections induced by etching steps. Microphotoluminescence spectra revealed degenerated resonant modes (Q-factor ∼700) whose fabrication-induced spectral splitting is comparable to the full width at half-maximum of the peaks. Active nanocavities tunable from visible to infrared spectral range on GaAs or Si substrates can be easily implemented by this technique
In this work, the analysis, fabrication and optical characterization of a two-dimensional circular p...
The development of semiconductor based single photon sources at telecom wavelength is a fundamental ...
Two-dimensional photonic crystals (PC) can provide a universal platform for nanocavity optical reson...
Thanks to their low fabrication costs and the well established surface-functionalization techniques ...
In this work, we show the fabrication of colloidal nanocrystals (NCs) based waveguide photonic devic...
We propose a new technique for the localization of colloidal nanocrystals (NCs) by directly exposing...
Planar photonic crystal nanocavities, made in a thin semiconductor membrane and suspended by breakab...
We have developed a wet chemical digital etching technique for tuning the resonant wavelengths of ph...
Photonic crystal (PhC) cavities made in broadband luminescent material offer attractive possibilitie...
This work discusses the fabrication of two-dimensional photonic crystal microcavities (PCMs) in a th...
Both techniques and applications of nanofabrication have been explored in the field of periodic diel...
Hexagonal symmetry InGaAsP membrane type cavities with embedded InAs quantum dots as active emitters...
This paper describes the design and fabrication process of a two-dimensional GaAs-based photonic cry...
In this work the analysis, fabrication and optical characterization of a circular two-dimensional ph...
The authors report on the fabrication and optical characterizations of two-dimensional photonic crys...
In this work, the analysis, fabrication and optical characterization of a two-dimensional circular p...
The development of semiconductor based single photon sources at telecom wavelength is a fundamental ...
Two-dimensional photonic crystals (PC) can provide a universal platform for nanocavity optical reson...
Thanks to their low fabrication costs and the well established surface-functionalization techniques ...
In this work, we show the fabrication of colloidal nanocrystals (NCs) based waveguide photonic devic...
We propose a new technique for the localization of colloidal nanocrystals (NCs) by directly exposing...
Planar photonic crystal nanocavities, made in a thin semiconductor membrane and suspended by breakab...
We have developed a wet chemical digital etching technique for tuning the resonant wavelengths of ph...
Photonic crystal (PhC) cavities made in broadband luminescent material offer attractive possibilitie...
This work discusses the fabrication of two-dimensional photonic crystal microcavities (PCMs) in a th...
Both techniques and applications of nanofabrication have been explored in the field of periodic diel...
Hexagonal symmetry InGaAsP membrane type cavities with embedded InAs quantum dots as active emitters...
This paper describes the design and fabrication process of a two-dimensional GaAs-based photonic cry...
In this work the analysis, fabrication and optical characterization of a circular two-dimensional ph...
The authors report on the fabrication and optical characterizations of two-dimensional photonic crys...
In this work, the analysis, fabrication and optical characterization of a two-dimensional circular p...
The development of semiconductor based single photon sources at telecom wavelength is a fundamental ...
Two-dimensional photonic crystals (PC) can provide a universal platform for nanocavity optical reson...