We demonstrate the coupling of single color centers in diamond to plasmonic and dielectric photonic structures to realize novel nanophotonic devices. Nanometer spatial control in the creation of single color centers in diamond is achieved by implantation of nitrogen atoms through high-aspect-ratio channels in a mica mask. Enhanced broadband single-photon emission is demonstrated by coupling nitrogen-vacancy centers to plasmonic resonators, such as metallic nanoantennas. Improved photon-collection efficiency and directed emission is demonstrated by solid immersion lenses and micropillar cavities. Thereafter, the coupling of diamond nanocrystals to the guided modes of micropillar resonators is discussed along with experimental results. Finall...
Quantum communication and quantum metrology established a demand for an accessible solid state syste...
We present the controlled creation of single nitrogen-vacancy (NV) centers via ion implantation at t...
The practical implementation of many quantum technologies relies on the development of robust and br...
We demonstrate the coupling of single color centers in diamond to plasmonic and dielectric photonic ...
Advances in nanotechnology have enabled the opportunity to fabricate nanoscale optical devices and ...
We demonstrate a new approach for engineering group IV semiconductor-based quantum photonic structur...
The past two decades have seen great advances in developing color centers in diamond for sensing, qu...
A technique to create nickel-related single color centers in individual nanodiamonds is demonstrated...
Light-matter interaction is the foundation for numerous important quantum optical phenomena, which m...
The development of material-processing techniques that can be used to generate optical diamond nanos...
This thesis is about the design, fabrication, and characterization of nanophotonic elements in the v...
University of Technology Sydney. Faculty of Science.Single crystal diamonds have emerged as importan...
To grasp a greater understanding and explore the various quantum technologies, it is imperative to e...
Individual color centers in diamond are promising for near-term quantum technologies including quant...
We investigate native nitrogen vacancy (NV) and silicon vacancy (SiV) color centers in a commerciall...
Quantum communication and quantum metrology established a demand for an accessible solid state syste...
We present the controlled creation of single nitrogen-vacancy (NV) centers via ion implantation at t...
The practical implementation of many quantum technologies relies on the development of robust and br...
We demonstrate the coupling of single color centers in diamond to plasmonic and dielectric photonic ...
Advances in nanotechnology have enabled the opportunity to fabricate nanoscale optical devices and ...
We demonstrate a new approach for engineering group IV semiconductor-based quantum photonic structur...
The past two decades have seen great advances in developing color centers in diamond for sensing, qu...
A technique to create nickel-related single color centers in individual nanodiamonds is demonstrated...
Light-matter interaction is the foundation for numerous important quantum optical phenomena, which m...
The development of material-processing techniques that can be used to generate optical diamond nanos...
This thesis is about the design, fabrication, and characterization of nanophotonic elements in the v...
University of Technology Sydney. Faculty of Science.Single crystal diamonds have emerged as importan...
To grasp a greater understanding and explore the various quantum technologies, it is imperative to e...
Individual color centers in diamond are promising for near-term quantum technologies including quant...
We investigate native nitrogen vacancy (NV) and silicon vacancy (SiV) color centers in a commerciall...
Quantum communication and quantum metrology established a demand for an accessible solid state syste...
We present the controlled creation of single nitrogen-vacancy (NV) centers via ion implantation at t...
The practical implementation of many quantum technologies relies on the development of robust and br...