Birefringent single-mode fibers with random polarization mode coupling and polarization dependent losses are considered. The effect of these losses on polarization mode dispersion (PMD) is computed. The relevant number is found to be the differential loss between both polarization modes over one coupling length. For polarizing fibers, the coupling length is of several kilometers, the relevant number is thus high, and the PMD is significantly reduced by the differential loss. For standard fibers, on the other hand, the coupling length is of several tens of meters, the relevant number is thus small and polarization dependent losses have a negligible effect on the PMD. © 1993
Spatially resolved measurements of polarization properties of fiber optic link - such as birefringen...
The propagation of pulses in optical fibers with polarization mode dispersion (PMD) is considered. T...
This paper presents a completely new method able to characterize polarization mode dispersion (PMD) ...
Birefringent single-mode fibers with random polarization mode coupling and polarization dependent lo...
Polarization-Mode Dispersion (PMD) has the same effect on light signals in optical fibers as an...
We discuss the polarization mode dispersion properties of spun, single-mode, randomly birefringent f...
This book contains a series of tutorial essays on polarization mode dispersion (PMD) by the leading ...
We present the formalism required to describe the combined effects of polarization mode dispersion (...
The objective of this project is to understand the major developments of Polarized light in Fiber Op...
We present two ways of analyzing the polarization mode dispersion with random coupling in standard s...
The topic of this thesis is polarization-mode dispersion (PMD) in optical fibers and its impact on h...
Polarization decorrelation in single-mode fibers with randomly varying birefringence is studied. We ...
Abstract—The performance degradation caused by polariza-tion-dependent loss (PDL) in optical fiber t...
We present analytical results on the polarization-mode dispersion characteristics of single-mode bir...
The interplay between polarization mode dispersion (PMD) and polarization-dependent losses (PDLs) is...
Spatially resolved measurements of polarization properties of fiber optic link - such as birefringen...
The propagation of pulses in optical fibers with polarization mode dispersion (PMD) is considered. T...
This paper presents a completely new method able to characterize polarization mode dispersion (PMD) ...
Birefringent single-mode fibers with random polarization mode coupling and polarization dependent lo...
Polarization-Mode Dispersion (PMD) has the same effect on light signals in optical fibers as an...
We discuss the polarization mode dispersion properties of spun, single-mode, randomly birefringent f...
This book contains a series of tutorial essays on polarization mode dispersion (PMD) by the leading ...
We present the formalism required to describe the combined effects of polarization mode dispersion (...
The objective of this project is to understand the major developments of Polarized light in Fiber Op...
We present two ways of analyzing the polarization mode dispersion with random coupling in standard s...
The topic of this thesis is polarization-mode dispersion (PMD) in optical fibers and its impact on h...
Polarization decorrelation in single-mode fibers with randomly varying birefringence is studied. We ...
Abstract—The performance degradation caused by polariza-tion-dependent loss (PDL) in optical fiber t...
We present analytical results on the polarization-mode dispersion characteristics of single-mode bir...
The interplay between polarization mode dispersion (PMD) and polarization-dependent losses (PDLs) is...
Spatially resolved measurements of polarization properties of fiber optic link - such as birefringen...
The propagation of pulses in optical fibers with polarization mode dispersion (PMD) is considered. T...
This paper presents a completely new method able to characterize polarization mode dispersion (PMD) ...