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Table of Contents
Introduction
PART A: Semiconductor Nanostructures
Submonolayer Quantum Dots
Stressor-Induced Site Control of Quantum Dots for Single-Photon Sources
Coherent and Incoherent Dynamics in Quantum Dots and Nanophotonic Devices
Optical and Structural Properties of Nitride based Nanostructures
Theory of Spectroscopy and Light Emission of Semiconductor Nanostructures
PART B: Nanophotonics Devices
Multi-Dimensional Modelling and Simulation of Nanophotonic Devices
Deterministic Quantum Devices for Optical Quantum Communication
Quantum Networks Based on Single Photons
Vertical-Cavity Surface-Emitting Lasers (VCSELs) for Communication, Sensing, and Integration
VCSEL-Based Silicon Photonic Interconnect Technologies
Nitride Microcavities for Classical and Non-Classical Light Emitters
Group III-Mitride-Based Laser Diodes.
PART A: Semiconductor Nanostructures
Submonolayer Quantum Dots
Stressor-Induced Site Control of Quantum Dots for Single-Photon Sources
Coherent and Incoherent Dynamics in Quantum Dots and Nanophotonic Devices
Optical and Structural Properties of Nitride based Nanostructures
Theory of Spectroscopy and Light Emission of Semiconductor Nanostructures
PART B: Nanophotonics Devices
Multi-Dimensional Modelling and Simulation of Nanophotonic Devices
Deterministic Quantum Devices for Optical Quantum Communication
Quantum Networks Based on Single Photons
Vertical-Cavity Surface-Emitting Lasers (VCSELs) for Communication, Sensing, and Integration
VCSEL-Based Silicon Photonic Interconnect Technologies
Nitride Microcavities for Classical and Non-Classical Light Emitters
Group III-Mitride-Based Laser Diodes.