In this review, we discuss the progress and prospects offered by chalcogenide glass photonic crystals. We show that by making photonic crystals from a highly-nonlinear chalcogenide glass, we have the potential to integrate a variety of active devices into a photonic chip. We describe the testing of two-dimensional Ge33As12Se55 chalcogenide glass photonic crystal membrane devices (waveguides and microcavities). We then demonstrate the ability to not only post-tune the devices properties but also create high Q cavities by using the material photosensitivity
Chalcogenide glasses are important amorphous semiconductors used for phase-change memories, solar ce...
We demonstrate low loss photonic crystal waveguides in chalcogenide (Ge(33)As(12)Se(55)) glasses. Th...
comID: MC2.2International audienceChalcogenide glasses are based on a mixture of chalcogen elements ...
In this review, we discuss the progress and prospects offered by chalcogenide glass photonic crystal...
All-optical switching devices are based on a material possessing a nonlinear optical response, enabl...
All-optical switching devices are based on a material possessing a nonlinear optical response, enabl...
All optical switching devices based on kerr-effect, where light switches light, are enjoying renewed...
The unique and striking material properties of chalcogenide glasses have been studied for decades, p...
Information and communication are playing a growing role in modern society. In this increasingly int...
Chalcogenide glasses have amongst the highest third order nonlinearity of any amorphous material, ne...
We demonstrate a photonic crystal (PC) cavity formed post-fabrication by locally modifying the refra...
Chalcogenide glasses, namely the amorphous compounds containing sulfur, selenium, and/or tellurium, ...
The growing speed and bandwidth requirements of telecommunication systems demand all-optical on-chip...
We report on the fabrication of chalcogenide glass (Ag-As_2Se_3) photonic crystal waveguides and the...
conference 6128 " Photonic Crystal Materials and Devices IV ", topic " Nanotechnologies in Photonics...
Chalcogenide glasses are important amorphous semiconductors used for phase-change memories, solar ce...
We demonstrate low loss photonic crystal waveguides in chalcogenide (Ge(33)As(12)Se(55)) glasses. Th...
comID: MC2.2International audienceChalcogenide glasses are based on a mixture of chalcogen elements ...
In this review, we discuss the progress and prospects offered by chalcogenide glass photonic crystal...
All-optical switching devices are based on a material possessing a nonlinear optical response, enabl...
All-optical switching devices are based on a material possessing a nonlinear optical response, enabl...
All optical switching devices based on kerr-effect, where light switches light, are enjoying renewed...
The unique and striking material properties of chalcogenide glasses have been studied for decades, p...
Information and communication are playing a growing role in modern society. In this increasingly int...
Chalcogenide glasses have amongst the highest third order nonlinearity of any amorphous material, ne...
We demonstrate a photonic crystal (PC) cavity formed post-fabrication by locally modifying the refra...
Chalcogenide glasses, namely the amorphous compounds containing sulfur, selenium, and/or tellurium, ...
The growing speed and bandwidth requirements of telecommunication systems demand all-optical on-chip...
We report on the fabrication of chalcogenide glass (Ag-As_2Se_3) photonic crystal waveguides and the...
conference 6128 " Photonic Crystal Materials and Devices IV ", topic " Nanotechnologies in Photonics...
Chalcogenide glasses are important amorphous semiconductors used for phase-change memories, solar ce...
We demonstrate low loss photonic crystal waveguides in chalcogenide (Ge(33)As(12)Se(55)) glasses. Th...
comID: MC2.2International audienceChalcogenide glasses are based on a mixture of chalcogen elements ...