The spinning of single-mode telecommunication fibers is a technique currently and widely used to reduce polarization mode dispersion. Yet, this technique was originally envisaged as a way to produce fibers with arbitrarily low birefringence, to be used in sensor applications. In spite of their applicative significance, spun fibers are still not completely understood. In this paper, we report an extensive analysis of the polarization properties of spun fiber. Both unidirectional and periodic spin profiles are considered. It is shown that very high polarization maintaining capabilities may be achieved by properly tuning the spin parameters
Polarization mode dispersion causes significant impairment in high bit-rate optical telecommunicatio...
The birefringence properties of single-mode optical-fibre waveguides are discussed.A fibre birefring...
Spinning the preform during drawing produces a fibre with a permanent twist. It is shown that such a...
Spun fibers are one of the most viable solutions to polarization mode dispersion. In this paper, the...
We compare the different polarization properties of unspun fibers with respect to spun fibers, consi...
The polarization mode dispersion of spun fibers with randomly varying birefringence was investigated...
Spin process is the most effective and diffused way to reduce polarization mode dispersion in single...
This paper shows how the initial linear birefringence determines the necessary spinning parameters t...
We discuss the polarization mode dispersion properties of spun, single-mode, randomly birefringent f...
The behavior of Polarization Mode Dispersion (PMD) in spun optical fiber is a topic of great interes...
Spin process is the most effective and diffused way to reduce polarization mode dispersion in single...
Abstract—Spun fibers are increasingly used in telecommunica-tion systems because their polarization-...
A novel technique, based on polarization-sensitive, frequency-domain reflectometry, for a full nonin...
Spun fibers are increasingly used in telecommunication systems because their polarization-mode dispe...
We report on polarization sensitive characterization of a set of various fibers, showing that in per...
Polarization mode dispersion causes significant impairment in high bit-rate optical telecommunicatio...
The birefringence properties of single-mode optical-fibre waveguides are discussed.A fibre birefring...
Spinning the preform during drawing produces a fibre with a permanent twist. It is shown that such a...
Spun fibers are one of the most viable solutions to polarization mode dispersion. In this paper, the...
We compare the different polarization properties of unspun fibers with respect to spun fibers, consi...
The polarization mode dispersion of spun fibers with randomly varying birefringence was investigated...
Spin process is the most effective and diffused way to reduce polarization mode dispersion in single...
This paper shows how the initial linear birefringence determines the necessary spinning parameters t...
We discuss the polarization mode dispersion properties of spun, single-mode, randomly birefringent f...
The behavior of Polarization Mode Dispersion (PMD) in spun optical fiber is a topic of great interes...
Spin process is the most effective and diffused way to reduce polarization mode dispersion in single...
Abstract—Spun fibers are increasingly used in telecommunica-tion systems because their polarization-...
A novel technique, based on polarization-sensitive, frequency-domain reflectometry, for a full nonin...
Spun fibers are increasingly used in telecommunication systems because their polarization-mode dispe...
We report on polarization sensitive characterization of a set of various fibers, showing that in per...
Polarization mode dispersion causes significant impairment in high bit-rate optical telecommunicatio...
The birefringence properties of single-mode optical-fibre waveguides are discussed.A fibre birefring...
Spinning the preform during drawing produces a fibre with a permanent twist. It is shown that such a...