Femtosecond laser writing is applied to form Bragg grating waveguides in the diamond bulk. Type II waveguides are integrated with a single pulse point-by-point periodic laser modification positioned toward the edge of the waveguide core. These photonic devices, operating in the telecommunications band, allow for simultaneous optical waveguiding and narrowband reflection from a fourth-order grating. This fabrication technology opens the way toward advanced 3D photonic networks in diamond for a range of applications
Waveguide bundles in bulk glass materials, consisting of several parallel scans of refractive index ...
Diamond is a promising platform for sensing and quantum processing owing to the remarkable propertie...
Summary form only given. Diamond is an exceptional material due to its hardness, high thermal conduc...
Femtosecond laser writing is applied to form Bragg grating waveguides in the diamond bulk. Type II w...
Three dimensional waveguides within the bulk of diamond are manufactured using ultrafast laser fabri...
In recent years, the perception of diamond has changed from it being a pure gemstone to a universal ...
An all-diamond photonic circuit was implemented by integrating a diamond microsphere with a femtosec...
We present a flexible and rapid method for the production of Bragg gratings in a range of optical wa...
International audienceA novel type of waveguide Bragg grating (WBG) is demonstrated based on femtose...
Abstract We present a flexible and rapid method for the production of Bragg gratings in a range of o...
Integrated photonic circuits pave the way for next generation technologies for quantum information a...
Using a femtosecond laser source waveguide, Bragg grating and waveguide-Bragg grating (WBG) structur...
We report on our capabilities to fabricate photonic devices in a large variety of different transpar...
Optical waveguides that incorporate Bragg gratings have been written in bulk fused silica by using t...
Waveguide bundles in bulk glass materials, consisting of several parallel scans of refractive index ...
Diamond is a promising platform for sensing and quantum processing owing to the remarkable propertie...
Summary form only given. Diamond is an exceptional material due to its hardness, high thermal conduc...
Femtosecond laser writing is applied to form Bragg grating waveguides in the diamond bulk. Type II w...
Three dimensional waveguides within the bulk of diamond are manufactured using ultrafast laser fabri...
In recent years, the perception of diamond has changed from it being a pure gemstone to a universal ...
An all-diamond photonic circuit was implemented by integrating a diamond microsphere with a femtosec...
We present a flexible and rapid method for the production of Bragg gratings in a range of optical wa...
International audienceA novel type of waveguide Bragg grating (WBG) is demonstrated based on femtose...
Abstract We present a flexible and rapid method for the production of Bragg gratings in a range of o...
Integrated photonic circuits pave the way for next generation technologies for quantum information a...
Using a femtosecond laser source waveguide, Bragg grating and waveguide-Bragg grating (WBG) structur...
We report on our capabilities to fabricate photonic devices in a large variety of different transpar...
Optical waveguides that incorporate Bragg gratings have been written in bulk fused silica by using t...
Waveguide bundles in bulk glass materials, consisting of several parallel scans of refractive index ...
Diamond is a promising platform for sensing and quantum processing owing to the remarkable propertie...
Summary form only given. Diamond is an exceptional material due to its hardness, high thermal conduc...