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Titlebook: Handbook of Optical Fibers; Gang-Ding Peng Reference work 2019 Springer Nature Singapore Pte Ltd. 2019 Active Fiber Devices.Fiber Amplifie

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Shock Wavesneral mechanism commonly known as gradient catastrophe and the related concept of classical shock waves. Then we proceed to discuss the possible regularization mechanisms of the shock, and in particular the dispersive regularization, which is behind the formation of dispersive shock waves in fibers.
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A Variety of Dynamical Settings in Dual-Core Nonlinear Fibersl waveguides based on a pair of parallel guiding cores, which combine the linear inter-core coupling with the intrinsic cubic (Kerr) nonlinearity, anomalous group-velocity dispersion, and, possibly, intrinsic loss and gain in each core. The survey is focused on three main topics: spontaneous breakin
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Fabrication of Negative Curvature Hollow Core Fiberious types of hollow core fiber and their improvement made in term of attenuation of fiber, followed by a description of the guiding mechanism of the negative curvature hollow core fiber (NC-HCF) using antiresonant reflecting optical waveguide (ARROW) mechanism. Then, we present the general fabricat
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Microfiber: Physics and Fabricationng modes corresponding to various diameters are comprehensively explained based on wave equation. Subsequently, the effective refractive indices are related to the adiabaticity criterion of microfiber based on the upper boundary of taper angle. Following that, an overview of microfiber fabrication t
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Flat Fibers: Fabrication and Modal Characterizationeguides and standard optical fibers. In the introduction section, the demand for flat fibers is discussed including its applications. The main text of this chapter discusses the drawing process of flat fibers including issues such as flat fiber drawing repeatability and drawing of flat fibers with d
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