Chalcogenide glasses, namely the amorphous compounds containing sulfur, selenium, and/or tellurium, have emerged as a promising material candidate for integrated photonics given their wide infrared transparency window, low processing temperature, almost infinite capacity for composition alloying, as well as high linear and nonlinear indices. Here we present the fabrication and characterization of chalcogenide glass based photonic devices integrated on silicon as well as on flexible polymer substrates for mid-IR sensing, optical interconnect and nonlinear optics applications. © 2013 Copyright SPIE
Next generation optical and opto-electronic components will require materials that possess unique, s...
Chalcogenide glass (ChG) materials have made in-roads into infrared photonic devices in both thin fi...
Chalcogenide glass (ChG) materials have made in-roads into infrared photonic devices in both thin fi...
Chalcogenide glasses, namely the amorphous compounds containing sulfur, selenium, and/or tellurium, ...
Chalcogenide glasses, namely the amorphous compounds containing sulfur, selenium, and/or tellurium, ...
Chalcogenide glasses, namely the amorphous compounds containing sulfur, selenium, and/or tellurium, ...
Chalcogenide glasses, namely the amorphous compounds containing sulfur, selenium, and/or tellurium, ...
Infrared (IR) spectroscopy is widely recognized as a gold standard technique for chemical analysis. ...
Infrared (IR) spectroscopy is widely recognized as a gold standard technique for chemical analysis. ...
The unique and striking material properties of chalcogenide glasses have been studied for decades, p...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
Hu, JuejunChalcogenide glasses, namely the amorphous compounds containing sulfur, selenium, and/or ...
Photonic integration on thin flexible plastic substrates is important for emerging applications rang...
Chalcogenide glass (ChG) materials have made in-roads into infrared photonic devices in both thin fi...
Next generation optical and opto-electronic components will require materials that possess unique, s...
Next generation optical and opto-electronic components will require materials that possess unique, s...
Chalcogenide glass (ChG) materials have made in-roads into infrared photonic devices in both thin fi...
Chalcogenide glass (ChG) materials have made in-roads into infrared photonic devices in both thin fi...
Chalcogenide glasses, namely the amorphous compounds containing sulfur, selenium, and/or tellurium, ...
Chalcogenide glasses, namely the amorphous compounds containing sulfur, selenium, and/or tellurium, ...
Chalcogenide glasses, namely the amorphous compounds containing sulfur, selenium, and/or tellurium, ...
Chalcogenide glasses, namely the amorphous compounds containing sulfur, selenium, and/or tellurium, ...
Infrared (IR) spectroscopy is widely recognized as a gold standard technique for chemical analysis. ...
Infrared (IR) spectroscopy is widely recognized as a gold standard technique for chemical analysis. ...
The unique and striking material properties of chalcogenide glasses have been studied for decades, p...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
Hu, JuejunChalcogenide glasses, namely the amorphous compounds containing sulfur, selenium, and/or ...
Photonic integration on thin flexible plastic substrates is important for emerging applications rang...
Chalcogenide glass (ChG) materials have made in-roads into infrared photonic devices in both thin fi...
Next generation optical and opto-electronic components will require materials that possess unique, s...
Next generation optical and opto-electronic components will require materials that possess unique, s...
Chalcogenide glass (ChG) materials have made in-roads into infrared photonic devices in both thin fi...
Chalcogenide glass (ChG) materials have made in-roads into infrared photonic devices in both thin fi...