IRF-Se-100 Chalcogenide LWIR Fiber
Description
Chalcogenide glass is based on the chalcogen elements (sulfur, selenium and tellurium) with the addition of other elements such as arsenic, antimony, or germanium. It offers promising properties such as transmission in mid and far infrared regions of spectra, lower values of phonon energies, high refractive index and very large nonlinearities as compared to silica. Chalcogenide glass fibers are the ideal candidates for mid-infrared applications that require high power laser delivery, chemical sensing, thermal imaging and temperature monitoring. IRflex’s IRF-Se Series long-wave infrared (LWIR) fiber, made from extra high purity chalcogenide glass As2Se3, is specially designed and manufactured to generate and/or guide mid-infrared wavelengths from 1.5 to 10µm with high transmission efficiency and nonlinearities about 1000 times that of silica glass fiber.
IRF-Se-100 Chalcogenide LWIR Fiber
Specifications |
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Mode Field Diameter (MFD): | 100 um |
Wavelength Range: | 1500-10000nm |
Cable Length: | -- m |
Fiber Core Material: | Chalcogenide Glass |
Features
Low loss
Broad transmission range from 1.5 to 10µm
High power handling strength
High mechanical flexibility
Applications
MID-IR laser beam delivery
IR spectroscopy
Chemical sensing
Scientific and medical diagnostics IR-imaging system
Nonlinear supercontinuum generation
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Frequently Asked Questions
The IRF-Se-100 Chalcogenide LWIR Fiber is used for mid-infrared applications that require high power laser delivery, chemical sensing, thermal imaging, and temperature monitoring.
The transmission range of the IRF-Se-100 Chalcogenide LWIR Fiber is from 1.5 to 10µm.
The features of the IRF-Se-100 Chalcogenide LWIR Fiber include low loss, broad transmission range from 1.5 to 10µm, high power handling strength, and high mechanical flexibility.
The refractive index of the IRF-Se-100 Chalcogenide LWIR Fiber is 2.7.
The typical optical loss of the IRF-Se-100 Chalcogenide LWIR Fiber is less than 0.2 dB/m at 6.7μm.