© 2020 SPIE. New narrow-gap two-dimensional (2-D) semiconductors exemplified by black phosphorus and tellurene are promising material candidates for mid-IR optoelectronic devices. In particular, tellurene, atomically thin crystals of elemental tellurium, is an emerging narrow-gap 2-D semiconductor amenable to scalable solution-based synthesis and large-area deposition. It uniquely combines tunable bandgap energies, high carrier mobility, exceptionally large electro-optic activity, and superior chemical stability, making it a promising and versatile material platform for mid-infrared photonics. Here we discuß the design and experimental realization of integrated photonic devices based on tellurene and other 2-D semiconductors specifically fo...
International audienceTelluride glasses, i.e., nonoxide glasses based on the chalcogen element tellu...
Two-dimensional (2D) mono-elemental materials (Xenes) show remarkable potential in the fields of fun...
With the innovation of technologies that will impact our daily life such as the internet of things (...
The mid-infrared spectral band (2-20 μm) is of significant technological importance for thermal imag...
The interest in mid-infrared technologies surrounds plenty of important optoelectronic applications ...
The interest in mid-infrared technologies surrounds plenty of important optoelectronic applications ...
Two-dimensional (2D) materials, particularly black phosphorus (bP), have demonstrated themselves to ...
Two-dimensional (2D) materials, particularly black phosphorus (bP), have demonstrated themselves to ...
Herein we report a prediction of a highly kinetic stable layered structure of tellurium (namely, bul...
Layered van der Waals (vdW) materials have demonstrated huge potential for photonic devices with the...
In this talk, we give an overview of our chalcogenide material and device capabilities and the appli...
Chalcogenide glasses, namely the amorphous compounds containing sulfur, selenium, and/or tellurium, ...
Two-dimensional (2D) materials including graphene, transition metal dichalcogenides, black phosphoru...
Chalcogenide glasses, namely the amorphous compounds containing sulfur, selenium, and/or tellurium, ...
Two-dimensional (2-D) materials are of tremendous interest to silicon photonics given their singular...
International audienceTelluride glasses, i.e., nonoxide glasses based on the chalcogen element tellu...
Two-dimensional (2D) mono-elemental materials (Xenes) show remarkable potential in the fields of fun...
With the innovation of technologies that will impact our daily life such as the internet of things (...
The mid-infrared spectral band (2-20 μm) is of significant technological importance for thermal imag...
The interest in mid-infrared technologies surrounds plenty of important optoelectronic applications ...
The interest in mid-infrared technologies surrounds plenty of important optoelectronic applications ...
Two-dimensional (2D) materials, particularly black phosphorus (bP), have demonstrated themselves to ...
Two-dimensional (2D) materials, particularly black phosphorus (bP), have demonstrated themselves to ...
Herein we report a prediction of a highly kinetic stable layered structure of tellurium (namely, bul...
Layered van der Waals (vdW) materials have demonstrated huge potential for photonic devices with the...
In this talk, we give an overview of our chalcogenide material and device capabilities and the appli...
Chalcogenide glasses, namely the amorphous compounds containing sulfur, selenium, and/or tellurium, ...
Two-dimensional (2D) materials including graphene, transition metal dichalcogenides, black phosphoru...
Chalcogenide glasses, namely the amorphous compounds containing sulfur, selenium, and/or tellurium, ...
Two-dimensional (2-D) materials are of tremendous interest to silicon photonics given their singular...
International audienceTelluride glasses, i.e., nonoxide glasses based on the chalcogen element tellu...
Two-dimensional (2D) mono-elemental materials (Xenes) show remarkable potential in the fields of fun...
With the innovation of technologies that will impact our daily life such as the internet of things (...