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The effect of diffusion and reaction parameters on the separation in hollow fiber devices in investigated.
Because they preserve the wavelength of the optical signals, erbium fiber devices can amplify several different wavelength channels simultaneously without scrambling them.
These polymer-based fiber devices, are almost as thin as human hairs and so flexible that they can be tied in a knot.
We propose improvements in the design of hollow fiber devices in order to give higher chemical conversions.
The content of GeO2 was optimized to be 10.0 mol% to design a novel host material for solid state lasers and fiber devices.
We calculate the operation wavelength range of polarization controllers based on rotating wave plates such as paddle-type optical fiber devices.
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So a broadband tunable SMSP fiber device in this paper is designed.
The optical fiber device was designed to operate via luminescence reflection.
Design and operation of an optical fiber device for temperature sensing and thermal expansion measurement are reported.
As a demonstration, the team made a version of the long-channel fiber device designed to separate cells, sorting dead cells from living ones, and proved its efficiency in accomplishing this task.
The deposition technique based on chemical-bonding associated with physical-adsorption was developed to immobilize GO nanosheets on cylindrical fiber device.
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