Diamond is introduced as a material platform for visible/near‐infrared photonic metamaterials, with a nanostructured polycrystalline diamond metasurface only 170 nm thick providing an experimental demonstration of coherent light‐by‐light modulation at few‐optical‐cycle (6 fs) pulse durations. “Coherent control” of absorption in planar (subwavelength‐thickness) materials has emerged recently as a mechanism for high‐contrast all‐optical gating, with a speed of response that is limited only by the spectral width of the absorption line. It is shown here that a free‐standing diamond membrane structured by focused ion beam milling can provide strong, spectrally near‐flat absorption over a visible to near‐infrared wavelength range that is wide eno...
Diamond is a wide bandgap semiconductor with excellent physical properties which allow it to operate...
We experimentally demonstrate a new coherent absorption phenomenon - a time-reversed analogue of 'La...
We illustrate a mechanism based on coherent optical nonlinearities to realize optically tunable phot...
Diamond is introduced as a material platform for visible/near‐infrared photonic metamaterials, with ...
Diamond is introduced as a material platform for visible/near-infrared photonic metamaterials, with ...
All-optical signal processing is one of the rising fields to eliminate the disadvantages of optical–...
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 ...
Abstract: We experimentally demonstrate a new coherent absorption phenomenon, through which a planar...
Inhomogeneously broadened optical transitions of nitrogen-vacancy centers in diamond may be employed...
We demonstrate for the first time that a planar photonic metamaterial (a single layer of nanostructu...
© 2016 Dr. Afaq Habib PirachaThere is an intense interest in exploiting diamond’s remarkable combina...
Inhomogeneously broadened optical transitions of nitrogen-vacancy centers in diamond may be employed...
Inhomogeneously broadened optical transitions of nitrogen-vacancy centers in diamond may be employed...
Diamond is a wide bandgap semiconductor with excellent physical properties which allow it to operate...
Diamond is a wide bandgap semiconductor with excellent physical properties which allow it to operate...
We experimentally demonstrate a new coherent absorption phenomenon - a time-reversed analogue of 'La...
We illustrate a mechanism based on coherent optical nonlinearities to realize optically tunable phot...
Diamond is introduced as a material platform for visible/near‐infrared photonic metamaterials, with ...
Diamond is introduced as a material platform for visible/near-infrared photonic metamaterials, with ...
All-optical signal processing is one of the rising fields to eliminate the disadvantages of optical–...
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 ...
Abstract: We experimentally demonstrate a new coherent absorption phenomenon, through which a planar...
Inhomogeneously broadened optical transitions of nitrogen-vacancy centers in diamond may be employed...
We demonstrate for the first time that a planar photonic metamaterial (a single layer of nanostructu...
© 2016 Dr. Afaq Habib PirachaThere is an intense interest in exploiting diamond’s remarkable combina...
Inhomogeneously broadened optical transitions of nitrogen-vacancy centers in diamond may be employed...
Inhomogeneously broadened optical transitions of nitrogen-vacancy centers in diamond may be employed...
Diamond is a wide bandgap semiconductor with excellent physical properties which allow it to operate...
Diamond is a wide bandgap semiconductor with excellent physical properties which allow it to operate...
We experimentally demonstrate a new coherent absorption phenomenon - a time-reversed analogue of 'La...
We illustrate a mechanism based on coherent optical nonlinearities to realize optically tunable phot...