Summary form only given. Photonic devices that can guide, transfer or modulate light are highly desired in electronics and integrated silicon photonics. Through the nonlinear processes taking place during ultrafast laser-material interaction, laser light can impart permanent refractive index change in the bulk of materials, and thus enables the fabrication of different optical elements inside the material. However, due to strong multi-photon absorption of Si resulting delocalization of the light by free carriers induced plasma defocusing, the subsurface Si modification with femtosecond laser was not realized so far [1, 2]. Here, we demonstrate optical waveguides written deep inside silicon with a 1.5-μm high repetition rate femtosecond lase...
International audienceSymmetric embedded waveguides were fabricated in heavy metal oxide SF10 glass ...
Symmetric embedded waveguides were fabricated in heavy metal oxide SF10 glass using slit-shaped infr...
We report on our capabilities to fabricate photonic devices in a large variety of different transpar...
Photonic devices that can guide, transfer, or modulate light are highly desired in electronics and i...
The laser inscription of waveguides into the volume of crystalline silicon is presented. By using su...
Integrated optics in silicon is interesting for various optoelectronic devices, since photonics and ...
For the first time to the authors' knowledge, optical waveguides have been inscribed in bulk crystal...
International audienceDirect three-dimensional (3D) laser writing of waveguides is highly advanced i...
International audienceRecent demonstrations of internal structuring of silicon have open new perspec...
Using focused subnanosecond laser pulses at 1.064μm wavelength, modification of silicon into opaque ...
Localized, three-dimensional refractive index changes are generated by focused femtosecond laser rad...
Doctor of PhilosophyDepartment of Industrial & Manufacturing Systems EngineeringShuting LeiSilicon i...
International audienceAn important challenge in the field of three-dimensional ultrafast laser proce...
none3Fabrication of optical waveguides in glasses and crystals is very common for many applications ...
International audienceDiffraction gratings are transversally inscribed in the bulk of monolithic cry...
International audienceSymmetric embedded waveguides were fabricated in heavy metal oxide SF10 glass ...
Symmetric embedded waveguides were fabricated in heavy metal oxide SF10 glass using slit-shaped infr...
We report on our capabilities to fabricate photonic devices in a large variety of different transpar...
Photonic devices that can guide, transfer, or modulate light are highly desired in electronics and i...
The laser inscription of waveguides into the volume of crystalline silicon is presented. By using su...
Integrated optics in silicon is interesting for various optoelectronic devices, since photonics and ...
For the first time to the authors' knowledge, optical waveguides have been inscribed in bulk crystal...
International audienceDirect three-dimensional (3D) laser writing of waveguides is highly advanced i...
International audienceRecent demonstrations of internal structuring of silicon have open new perspec...
Using focused subnanosecond laser pulses at 1.064μm wavelength, modification of silicon into opaque ...
Localized, three-dimensional refractive index changes are generated by focused femtosecond laser rad...
Doctor of PhilosophyDepartment of Industrial & Manufacturing Systems EngineeringShuting LeiSilicon i...
International audienceAn important challenge in the field of three-dimensional ultrafast laser proce...
none3Fabrication of optical waveguides in glasses and crystals is very common for many applications ...
International audienceDiffraction gratings are transversally inscribed in the bulk of monolithic cry...
International audienceSymmetric embedded waveguides were fabricated in heavy metal oxide SF10 glass ...
Symmetric embedded waveguides were fabricated in heavy metal oxide SF10 glass using slit-shaped infr...
We report on our capabilities to fabricate photonic devices in a large variety of different transpar...