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Highly negative dispersion compensating fiber with low third order dispersion
by
Islam, Md Saiful
, Islam, Md. Ibadul
in
Bandwidths
/ Boundary conditions
/ Communication
/ Communications systems
/ Crystal fibers
/ dispersion compensation
/ Finite element method
/ Group velocity
/ group velocity dispersion
/ Information technology
/ nonlinear coefficient
/ Nonlinearity
/ Optical communication
/ Perfectly matched layers
/ Photonic crystals
/ third order dispersion
/ ultra-high negative dispersion
/ Velocity
/ Wave division multiplexing
2023
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Highly negative dispersion compensating fiber with low third order dispersion
by
Islam, Md Saiful
, Islam, Md. Ibadul
in
Bandwidths
/ Boundary conditions
/ Communication
/ Communications systems
/ Crystal fibers
/ dispersion compensation
/ Finite element method
/ Group velocity
/ group velocity dispersion
/ Information technology
/ nonlinear coefficient
/ Nonlinearity
/ Optical communication
/ Perfectly matched layers
/ Photonic crystals
/ third order dispersion
/ ultra-high negative dispersion
/ Velocity
/ Wave division multiplexing
2023
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Do you wish to request the book?
Highly negative dispersion compensating fiber with low third order dispersion
by
Islam, Md Saiful
, Islam, Md. Ibadul
in
Bandwidths
/ Boundary conditions
/ Communication
/ Communications systems
/ Crystal fibers
/ dispersion compensation
/ Finite element method
/ Group velocity
/ group velocity dispersion
/ Information technology
/ nonlinear coefficient
/ Nonlinearity
/ Optical communication
/ Perfectly matched layers
/ Photonic crystals
/ third order dispersion
/ ultra-high negative dispersion
/ Velocity
/ Wave division multiplexing
2023
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Highly negative dispersion compensating fiber with low third order dispersion
Journal Article
Highly negative dispersion compensating fiber with low third order dispersion
2023
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Overview
In this work, a dispersion compensating photonic crystal fiber (DC-PCF) is proposed in which dispersion, dispersion slope, second order dispersion, third order dispersion, nonlinearity, effective mode area,
parameter are investigated. The suggested structure is very effective for compensating of chromatic dispersion about −951 to −3075.10 ps/(nm.km) over 1340–1640 nm wavelength bandwidth. With perfectly matched layer boundary condition, guiding properties are inspected applying finite element method (FEM). The investigated results conform the opportunity of large negative dispersion and high group velocity dispersion (GVD) of −2367.10 ps/(nm.km) and 3018.55 ps
/km respectively, at 1550 nm operating wavelength. The offered fiber also shows low third order dispersion about −637.88 ps
/km, high nonlinearity of 91.11 W
km
. From overall simulation results, it can be expected that the suggested PCF will be an effective candidate in high bit rate long haul optical communication system as well as sensing applications.
Publisher
De Gruyter,Walter de Gruyter GmbH
Subject
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