In recent years, the perception of diamond has changed from it being a pure gemstone to a universal high-tech material. In the field of photonics, an increased interest is emerging due to its outstanding optical properties, such as its high refractive index, a spectrally wide transmission window, and high Raman coefficient. Furthermore, the capability to host color defects for room temperature single photon generation makes diamond an attractive platform for quantum photonics. Known as nature's hardest material, the fabrication and handling of crystalline diamond for integrated optics remains challenging. Here, we report on the fabrication of three-dimensional Type III depressed cladding waveguides in polycrystalline diamond substrates by d...
Photonic design and optimization of thin-film polycrystalline diamond waveguides are shown, serving ...
Photonic design and optimization of thin-film polycrystalline diamond waveguides are shown, serving ...
A comprehensive study and design of air-clad suspended ridge diamond waveguides for operation across...
Three dimensional waveguides within the bulk of diamond are manufactured using ultrafast laser fabri...
This thesis investigates the design and fabrication of integrated optics in diamond. Diamond is a pa...
Recent advances in the production of high-purity synthetic diamonds have made diamond an accessible ...
Diamond has emerged as a promising platform for nanophotonic, optical, and quantum technologies. Hig...
Femtosecond laser writing is applied to form Bragg grating waveguides in the diamond bulk. Type II w...
An all-diamond photonic circuit was implemented by integrating a diamond microsphere with a femtosec...
Diamond is a promising platform for sensing and quantum processing owing to the remarkable propertie...
Diamond’s nitrogen-vacancy (NV) centers show great promise in sensing applications and quantum compu...
Advances in nanotechnology have enabled the opportunity to fabricate nanoscale optical devices and ...
Photonic design and optimization of thin-film polycrystalline diamond waveguides are shown, serving ...
Photonic design and optimization of thin-film polycrystalline diamond waveguides are shown, serving ...
A comprehensive study and design of air-clad suspended ridge diamond waveguides for operation across...
Three dimensional waveguides within the bulk of diamond are manufactured using ultrafast laser fabri...
This thesis investigates the design and fabrication of integrated optics in diamond. Diamond is a pa...
Recent advances in the production of high-purity synthetic diamonds have made diamond an accessible ...
Diamond has emerged as a promising platform for nanophotonic, optical, and quantum technologies. Hig...
Femtosecond laser writing is applied to form Bragg grating waveguides in the diamond bulk. Type II w...
An all-diamond photonic circuit was implemented by integrating a diamond microsphere with a femtosec...
Diamond is a promising platform for sensing and quantum processing owing to the remarkable propertie...
Diamond’s nitrogen-vacancy (NV) centers show great promise in sensing applications and quantum compu...
Advances in nanotechnology have enabled the opportunity to fabricate nanoscale optical devices and ...
Photonic design and optimization of thin-film polycrystalline diamond waveguides are shown, serving ...
Photonic design and optimization of thin-film polycrystalline diamond waveguides are shown, serving ...
A comprehensive study and design of air-clad suspended ridge diamond waveguides for operation across...