Non-classical light sources offer a myriad of possibilities in both fundamental science and commercial applications. Single photons are the most robust carriers of quantum information and can be exploited for linear optics quantum information processing. Scale-up requires miniaturisation of the waveguide circuit and multiple single photon sources. Silicon photonics, driven by the incentive of optical interconnects is a highly promising platform for the passive optical components, but integrated light sources are limited by silicon's indirect band-gap. III–V semiconductor quantum-dots, on the other hand, are proven quantum emitters. Here we demonstrate single-photon emission from quantum-dots coupled to photonic crystal nanocavities fabricat...
During the past two decades, the development of micro- and nano-fabrication technologies has positi...
Silicon photonics is a powerful platform for implementing large-scale photonic integrated circuits (...
We report the observation of single quantum dot (QD) emission in the telecoms C-band (1530–1565 nm) ...
Non-classical light sources offer a myriad of possibilities in both fundamental science and commerci...
PublishedJournal ArticleResearch Support, Non-U.S. Gov'tThis is the final version of the article. Av...
Non-classical light sources offer a myriad of possibilities in both fundamental science and commerci...
III-V Quantum-dot (QD) materials and lasers directly grown on Si platform are the most prospective c...
Scalable quantum photonics require efficient single-photon emitters as well as low-loss reconfigurab...
A major step toward fully integrated quantum optics is the deterministic incorporation of high quali...
A major step toward fully integrated quantum optics is the deterministic incorporation of high quali...
The work in this thesis is motivated by the goal of creating scalable quantum computers, and equally...
Building optoelectronic devices on a Si platform has been the engine behind the development of Si ph...
A major step toward fully integrated quantum optics is the deterministic incorporation of high quali...
On-chip quantum light sources on silicon photonic platforms have been the primary building block for...
Scalable quantum photonic systems require efficient single photon sources coupled to integrated phot...
During the past two decades, the development of micro- and nano-fabrication technologies has positi...
Silicon photonics is a powerful platform for implementing large-scale photonic integrated circuits (...
We report the observation of single quantum dot (QD) emission in the telecoms C-band (1530–1565 nm) ...
Non-classical light sources offer a myriad of possibilities in both fundamental science and commerci...
PublishedJournal ArticleResearch Support, Non-U.S. Gov'tThis is the final version of the article. Av...
Non-classical light sources offer a myriad of possibilities in both fundamental science and commerci...
III-V Quantum-dot (QD) materials and lasers directly grown on Si platform are the most prospective c...
Scalable quantum photonics require efficient single-photon emitters as well as low-loss reconfigurab...
A major step toward fully integrated quantum optics is the deterministic incorporation of high quali...
A major step toward fully integrated quantum optics is the deterministic incorporation of high quali...
The work in this thesis is motivated by the goal of creating scalable quantum computers, and equally...
Building optoelectronic devices on a Si platform has been the engine behind the development of Si ph...
A major step toward fully integrated quantum optics is the deterministic incorporation of high quali...
On-chip quantum light sources on silicon photonic platforms have been the primary building block for...
Scalable quantum photonic systems require efficient single photon sources coupled to integrated phot...
During the past two decades, the development of micro- and nano-fabrication technologies has positi...
Silicon photonics is a powerful platform for implementing large-scale photonic integrated circuits (...
We report the observation of single quantum dot (QD) emission in the telecoms C-band (1530–1565 nm) ...