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We report a novel fiber design for obtaining long period gratings (LPGs) having a broad transmission spectrum.
In this paper, we propose an optical fiber design for a wide field of view (WFOV) lidar receiver.
New hollow ring defect structure is introduced in photonic crystal fiber design for ultra- flat zero dispersion with very low waveguide losses.
This manuscript represents a novel porous core fiber design for Terahertz (THz) propagation with low loss and near zero flat dispersion properties.
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Practical fiber designs for two stage third-order soliton compression with single mode fibers are presented.
A variety of new low-cost fiber designs for the emerging metropolitan and access markets has been discussed in the chapter.
In addition, we propose a positive DMD (p-DMD) fiber designs for both, four-mode fiber (4-FMF) and six-mode fiber (6-FMF), respectively, having particularly attractive dispersion characteristics.
The Oxyphan® fiber (designed for blood oxygenation) was chosen for this purpose because it presents good mechanical resistance, high density of very fine pores and high ratio of collection area to volume of the acceptor fluid in the tube, all favorable for the development of air sampling apparatus.
We present an all-fiber design for a single polarization Yb-doped fiber laser with all-fiber connections spliced.
A negligible confinement loss along with a low dispersion slope (~0.03 ps/km-nm2), relatively low bend loss, and a good beam quality factor (M2~1.17) should make this LMA fiber design attractive for fabrication as a potential candidate suitable for high power, passive applications at the mid-IR wavelength regime.
We present a numerical study of two dimensional solid core photonic bandgap fiber design criteria for their particular application to blue/visible supercontinuum generation.
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