Nanophotonic circuits based on polished diamond thin films are prepared. These circuits cover a wide wavelength range across the entire visible spectrum. Integrated devices are surface functionalized site-specifically and in parallel using dip-pen nanolithography with a minimum linewidth of 100 nm. Multicolor fluorescence is coupled into the underlying photonic network using microring resonators and grating structures
© 2016 Dr. Afaq Habib PirachaThere is an intense interest in exploiting diamond’s remarkable combina...
Diamond provides superior optical and mechanical material properties, making it a prime candidate fo...
We demonstrate an integrated nanophotonic network in diamond, consisting of a ring resonator coupled...
We demonstrate the coupling of single color centers in diamond to plasmonic and dielectric photonic ...
Synthetic diamond films can be prepared on a waferscale by using chemical vapour deposition (CVD) on...
Photonic quantum technologies hold promise to repeat the success of integrated nanophotonic circuits...
Diamond has emerged as a promising platform for nanophotonic, optical, and quantum technologies. Hig...
Advances in nanotechnology have enabled the opportunity to fabricate nanoscale optical devices and ...
Freestanding diamond nanostructures are etched from a bulk diamond substrate and integrated with eva...
Diamond offers unique material advantages for the realization of micro- and nanomechanical resonator...
We demonstrate integrated optomechanical circuits with high mechanical quality factors prepared from...
Diamond and nanodiamond based systems are here presented as innovative fluorescent materials for pho...
The past two decades have seen great advances in developing color centers in diamond for sensing, qu...
Diamond integrated photonic devices are promising candidates for emerging applications in nanophoton...
We realize nanophotonic circuits on large area, microcrystalline diamond-on-insulator substrates, in...
© 2016 Dr. Afaq Habib PirachaThere is an intense interest in exploiting diamond’s remarkable combina...
Diamond provides superior optical and mechanical material properties, making it a prime candidate fo...
We demonstrate an integrated nanophotonic network in diamond, consisting of a ring resonator coupled...
We demonstrate the coupling of single color centers in diamond to plasmonic and dielectric photonic ...
Synthetic diamond films can be prepared on a waferscale by using chemical vapour deposition (CVD) on...
Photonic quantum technologies hold promise to repeat the success of integrated nanophotonic circuits...
Diamond has emerged as a promising platform for nanophotonic, optical, and quantum technologies. Hig...
Advances in nanotechnology have enabled the opportunity to fabricate nanoscale optical devices and ...
Freestanding diamond nanostructures are etched from a bulk diamond substrate and integrated with eva...
Diamond offers unique material advantages for the realization of micro- and nanomechanical resonator...
We demonstrate integrated optomechanical circuits with high mechanical quality factors prepared from...
Diamond and nanodiamond based systems are here presented as innovative fluorescent materials for pho...
The past two decades have seen great advances in developing color centers in diamond for sensing, qu...
Diamond integrated photonic devices are promising candidates for emerging applications in nanophoton...
We realize nanophotonic circuits on large area, microcrystalline diamond-on-insulator substrates, in...
© 2016 Dr. Afaq Habib PirachaThere is an intense interest in exploiting diamond’s remarkable combina...
Diamond provides superior optical and mechanical material properties, making it a prime candidate fo...
We demonstrate an integrated nanophotonic network in diamond, consisting of a ring resonator coupled...