High pressure chemical vapor deposition (HPCVD) has shown to be a promising method for producing Cr2+:ZnSe and Fe2+:ZnSe mid-IR optical fiber lasers. The oxidation state of the dopants and their spatial homogeneity are critical for the characterization of effective fiber laser performance; however, this is challenging for small fiber cores and small doping concentrations. We demonstrate using synchrotron micro X-ray fluorescence (XRF) mapping to study the distribution of the dopants throughout the fiber cross-sections. Furthermore, we study the local chemical environment of these unique fiber structures using micro X-ray near edge absorption spectroscopy (XANES). Our study reveals that transition metal doped ZnSe deposited using HPCVD has n...
Blue-green light emitting diodes and lasers have been the driving force behind the dramatic improvem...
Solid-state lasers, and in particular fiber lasers, are becoming the most commonly used lasers in sc...
Emerging application of rare-earth (RE) doped optical fibers in high power lasers requires preforms ...
Today fiber lasers in the visible to near-infrared region of the spectrum are well known, however mi...
ZnSe and other zinc chalcogenide semiconductor materials can be doped with divalent transition metal...
Polycrystalline zinc selenide optical fibers and fiber lasers are expected to provide powerful capab...
This work is devoted to evaluating new laser systems based upon chromium and iron doped ZnSe structu...
ZnSe microstructured fibers have been designed and fabricated using silica capillaries and an air-si...
Recent advances of development of rare-earth (RE) doped optical fibers have become increasingly impo...
International audienceOptical composite fibers based on active transition metal (TM)-doped semicondu...
Optical composite fibers based on active transition metal (TM)-doped semiconductor crystals are bein...
Optical composite fibers based on active transition metal (TM)-doped semiconductor crystals are bein...
Transition metal (TM) doping in silica core optical fiber is one of the research area which has been...
Blue-green light emitting diodes and lasers have been the driving force behind the dramatic improvem...
Blue-green light emitting diodes and lasers have been the driving force behind the dramatic improvem...
Blue-green light emitting diodes and lasers have been the driving force behind the dramatic improvem...
Solid-state lasers, and in particular fiber lasers, are becoming the most commonly used lasers in sc...
Emerging application of rare-earth (RE) doped optical fibers in high power lasers requires preforms ...
Today fiber lasers in the visible to near-infrared region of the spectrum are well known, however mi...
ZnSe and other zinc chalcogenide semiconductor materials can be doped with divalent transition metal...
Polycrystalline zinc selenide optical fibers and fiber lasers are expected to provide powerful capab...
This work is devoted to evaluating new laser systems based upon chromium and iron doped ZnSe structu...
ZnSe microstructured fibers have been designed and fabricated using silica capillaries and an air-si...
Recent advances of development of rare-earth (RE) doped optical fibers have become increasingly impo...
International audienceOptical composite fibers based on active transition metal (TM)-doped semicondu...
Optical composite fibers based on active transition metal (TM)-doped semiconductor crystals are bein...
Optical composite fibers based on active transition metal (TM)-doped semiconductor crystals are bein...
Transition metal (TM) doping in silica core optical fiber is one of the research area which has been...
Blue-green light emitting diodes and lasers have been the driving force behind the dramatic improvem...
Blue-green light emitting diodes and lasers have been the driving force behind the dramatic improvem...
Blue-green light emitting diodes and lasers have been the driving force behind the dramatic improvem...
Solid-state lasers, and in particular fiber lasers, are becoming the most commonly used lasers in sc...
Emerging application of rare-earth (RE) doped optical fibers in high power lasers requires preforms ...