We report results of laser processing of amorphous silicon and silicon-germanium semiconductor materials for the production of integrated photonic platforms. As the materials are deposited and processed at low temperatures, they are flexible, low cost, and suitable for multi-layer integration with other photonic or electronic layers. We demonstrate the formation of waveguides via crystallization of pre-patterned silicon components and functional microstructures through crystallization and compositional tuning of silicon-germanium alloy films. These results open a route for the fabrication of high density, multi-functional integrated optoelectronic chips
The ability to manipulate the composition of semiconductor alloys on demand and at nanometer-scale r...
The ability to manipulate the composition of semiconductor alloys on demand and at nanometer-scale r...
Gu, TingyiPhotonics is a branch of science which deals with the manipulation of light (“photons”) an...
We report results of laser processing of amorphous silicon and silicon-germanium semiconductor mater...
We report results of laser processing of amorphous silicon and silicon-germanium semiconductor mater...
Research in silicon photonics is accelerated by the extensive understanding of silicon fabrication f...
The topic of the research that is presented in this thesis is the development of a laser-based metho...
In the quest to expand the functionality and capacity of group IV semiconductor photonic systems, ne...
In the quest to expand the functionality and capacity of group IV semiconductor photonic systems, ne...
This thesis, under the program called MEMPHIS (Merging Electronics and Micro & Nano Photonics in Int...
A study is presented on silicon oxynitride material for waveguides and germanium–silicon alloys for ...
We present a method for the production of polycrystalline Si (poly-Si) photonic micro-structures bas...
The field of silicon photonics has seen a period of rapid technological advancement over the past de...
A laser processing method is introduced for post-deposition tailoring of local composition and bandg...
A laser processing method is introduced for post-deposition tailoring of local composition and bandg...
The ability to manipulate the composition of semiconductor alloys on demand and at nanometer-scale r...
The ability to manipulate the composition of semiconductor alloys on demand and at nanometer-scale r...
Gu, TingyiPhotonics is a branch of science which deals with the manipulation of light (“photons”) an...
We report results of laser processing of amorphous silicon and silicon-germanium semiconductor mater...
We report results of laser processing of amorphous silicon and silicon-germanium semiconductor mater...
Research in silicon photonics is accelerated by the extensive understanding of silicon fabrication f...
The topic of the research that is presented in this thesis is the development of a laser-based metho...
In the quest to expand the functionality and capacity of group IV semiconductor photonic systems, ne...
In the quest to expand the functionality and capacity of group IV semiconductor photonic systems, ne...
This thesis, under the program called MEMPHIS (Merging Electronics and Micro & Nano Photonics in Int...
A study is presented on silicon oxynitride material for waveguides and germanium–silicon alloys for ...
We present a method for the production of polycrystalline Si (poly-Si) photonic micro-structures bas...
The field of silicon photonics has seen a period of rapid technological advancement over the past de...
A laser processing method is introduced for post-deposition tailoring of local composition and bandg...
A laser processing method is introduced for post-deposition tailoring of local composition and bandg...
The ability to manipulate the composition of semiconductor alloys on demand and at nanometer-scale r...
The ability to manipulate the composition of semiconductor alloys on demand and at nanometer-scale r...
Gu, TingyiPhotonics is a branch of science which deals with the manipulation of light (“photons”) an...