Polycrystalline zinc selenide optical fibers and fiber lasers are expected to provide powerful capabilities for infrared waveguiding and laser technology. High pressure chemical vapor deposition, which is the only technique currently capable of producing zinc selenide optical fibers, leaves a geometric imperfection in the form of a central pore which is detrimental to mode quality. Chemical vapor transport with large temperature and pressure gradients not only fills this central pore but also encourages polycrystalline grain growth. Increased grain size and a reduction in defects such as twinning are demonstrated with transmission electron microscopy, Raman spectroscopy, and X-ray diffraction, supporting that high-quality material is produc...
Optical composite fibers based on active transition metal (TM)-doped semiconductor crystals are bein...
Unary and compound semiconductors have been deposited into microstructured optical fibers to make ju...
The development of quantum cascade lasers that span mid-infrared wavelengths necessitate developing ...
ZnSe and other zinc chalcogenide semiconductor materials can be doped with divalent transition metal...
ZnSe microstructured fibers have been designed and fabricated using silica capillaries and an air-si...
Semiconductor waveguide fabrication for photonics applications is usually performed in a planar geom...
Today fiber lasers in the visible to near-infrared region of the spectrum are well known, however mi...
Semiconductor waveguide fabrication for photonics is usually performed in a planar geometry. However...
We demonstrate an array of tapered Ge-core/ZnSe-cladding waveguides in a silica fiber matrix for inf...
Laser-assisted metalorganic chemical vapor deposition (LMOCVD) has been used to grow epitaxial zinc ...
Le dépôt chimique en phase vapeur est un procédé permettant la réalisation de lentilles ou de fenêtr...
Chalcogenide glass optical fibers have been extensively studied since 1967, when sulphide based fibe...
High pressure chemical vapor deposition (HPCVD) has shown to be a promising method for producing Cr2...
Optical composite fibers based on active transition metal (TM)-doped semiconductor crystals are bein...
Chemical deposition is a powerful technology for fabrication of planar microelectronics. Optical fib...
Optical composite fibers based on active transition metal (TM)-doped semiconductor crystals are bein...
Unary and compound semiconductors have been deposited into microstructured optical fibers to make ju...
The development of quantum cascade lasers that span mid-infrared wavelengths necessitate developing ...
ZnSe and other zinc chalcogenide semiconductor materials can be doped with divalent transition metal...
ZnSe microstructured fibers have been designed and fabricated using silica capillaries and an air-si...
Semiconductor waveguide fabrication for photonics applications is usually performed in a planar geom...
Today fiber lasers in the visible to near-infrared region of the spectrum are well known, however mi...
Semiconductor waveguide fabrication for photonics is usually performed in a planar geometry. However...
We demonstrate an array of tapered Ge-core/ZnSe-cladding waveguides in a silica fiber matrix for inf...
Laser-assisted metalorganic chemical vapor deposition (LMOCVD) has been used to grow epitaxial zinc ...
Le dépôt chimique en phase vapeur est un procédé permettant la réalisation de lentilles ou de fenêtr...
Chalcogenide glass optical fibers have been extensively studied since 1967, when sulphide based fibe...
High pressure chemical vapor deposition (HPCVD) has shown to be a promising method for producing Cr2...
Optical composite fibers based on active transition metal (TM)-doped semiconductor crystals are bein...
Chemical deposition is a powerful technology for fabrication of planar microelectronics. Optical fib...
Optical composite fibers based on active transition metal (TM)-doped semiconductor crystals are bein...
Unary and compound semiconductors have been deposited into microstructured optical fibers to make ju...
The development of quantum cascade lasers that span mid-infrared wavelengths necessitate developing ...