We clarify the relationship between group delay ripple and differential group delay in birefringent, chirped fiber Bragg gratings and relate this information to polarization mode dispersion. We illust...
Information Abstract We demonstrate an adjustable polarization-modedispersion (PMD) compensator. The device uses a nonlinearly chirped fiber Bragg grating written into a high-birefringence photosensitive fiber.
Information Although guided wave optics is well established, the relationship between the mode and the refractive index perturbation in a Bragg grating plays an important role on the overall efficiency and type of
Information Polarization mode dispersion (PMD) in chirped fiber Bragg grating (CFBG) is experimentally studied in detail. The effects on PMD characteristics of fiber birefringence, group velocity dispersion and group
Information We clarify the relationship between group delay ripple and differential group delay in birefringent, chirped fiber Bragg gratings and relate this information to polarization mode dispersion.
Information Polarization mode dispersion (PMD) and polarization dependent loss (PDL) are indeed a major source of pulse distortion in high speed telecommunication systems. It is thus important to
Information The numerical modeling of fiber Bragg gratings is essential for understanding their optical behavior and optimizing their performance for specific applications.
Information Abstract: Polarization mode coupling (PMC) and related effects from writing fiber Bragg gratings in polarization maintaining fiber (FBGs-in-PMF) are observed experimentally for the first time by optical
Information The polarization mode dispersion (PMD) of fiber Bragg grating at different temperature has been studied. The experimental measurement has been done at different temperature from -20 -...
Information In this paper, the polarization mode dispersion in eight channel WDM system is evaluated by considering one even channel and one odd channel performance parameters like BER and Q-factor.
Information A novel method for controlling the chromatic dispersion of uniform fiber Bragg gratings (FBGs) in helical multicore fiber (HMCF) is proposed and experimentally demonstrated.
Information The underlying physics is governed by coupled-mode theory, where forward- and backward-propagating modes interact due to the refractive index perturbation. Mathematical Derivation of the Bragg
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