We exploit slow light (high ng) modes in planar photonic crystals in order to design a compact cavity, which provides an attractive path towards the miniaturization of near-infrared integrated fast pulsed lasers. By applying dispersion engineering techniques, we can design structures with a low dispersion, as needed by mode-locking operation. Our basic InP SiO2 heterostructure is robust and well suited to integrated laser applications. We show that an optimized 30 μm long cavity design yields 9 frequency-equidistant modes with a FSR of 178 GHz within a 11.5 nm bandwidth, which could potentially sustain the generation of optical pulses shorter than 700 fs. In addition, the numerically calculated quality factors of these modes are all above 1...
In this work we form a microcavity laser using two-dimensional photonic crystals embedded in a half ...
A novel micro-laser configuration formed by integrating an InGaAs/InP pillar with a silicon photonic...
Wideband dispersion-free slow light in chirped-slot photonic-crystal coupled waveguides is proposed ...
We present the design, theory and experimental implementation of a low modal volume microlaser based...
The physical mechanisms that can be used as general recipes for designing high-quality factor (Q) ph...
The development of an efficient silicon-based nanolight source is an important step for silicon-base...
We present a design methodology for hybrid lasers to realise mode-hop free operation by controlling ...
We introduce a photonic crystal ring cavity that resembles an internal gear and unites photonic crys...
We study efficient injectors for coupling light from z-invariant ridge waveguides into slow Bloch mo...
A systematic design process of slow light photonic crystal slab waveguides is presented with the aim...
A convenient approach for slowing down light in integrated optical circuits is by utilizing a set of...
UnrestrictedThe goal of the work throughout this thesis is to develop two-dimensional photonic cryst...
We present a systematic procedure for designing “flat bands” of photonic crystal waveguides for slo...
A compact, novel photonic crystal cavity aimed at applications with strict area limitations is prese...
8 pages, 4 figuresInternational audiencePhysical mechanisms involved in the light confinement in pho...
In this work we form a microcavity laser using two-dimensional photonic crystals embedded in a half ...
A novel micro-laser configuration formed by integrating an InGaAs/InP pillar with a silicon photonic...
Wideband dispersion-free slow light in chirped-slot photonic-crystal coupled waveguides is proposed ...
We present the design, theory and experimental implementation of a low modal volume microlaser based...
The physical mechanisms that can be used as general recipes for designing high-quality factor (Q) ph...
The development of an efficient silicon-based nanolight source is an important step for silicon-base...
We present a design methodology for hybrid lasers to realise mode-hop free operation by controlling ...
We introduce a photonic crystal ring cavity that resembles an internal gear and unites photonic crys...
We study efficient injectors for coupling light from z-invariant ridge waveguides into slow Bloch mo...
A systematic design process of slow light photonic crystal slab waveguides is presented with the aim...
A convenient approach for slowing down light in integrated optical circuits is by utilizing a set of...
UnrestrictedThe goal of the work throughout this thesis is to develop two-dimensional photonic cryst...
We present a systematic procedure for designing “flat bands” of photonic crystal waveguides for slo...
A compact, novel photonic crystal cavity aimed at applications with strict area limitations is prese...
8 pages, 4 figuresInternational audiencePhysical mechanisms involved in the light confinement in pho...
In this work we form a microcavity laser using two-dimensional photonic crystals embedded in a half ...
A novel micro-laser configuration formed by integrating an InGaAs/InP pillar with a silicon photonic...
Wideband dispersion-free slow light in chirped-slot photonic-crystal coupled waveguides is proposed ...