This paper shows how the initial linear birefringence determines the necessary spinning parameters to produce spun fiber with optimum differential group delay (DGD) and polarization mode dispersion (PMD) properties. DGD measurements are reported on two pairs of fibers, each pair having been fabricated from a particular fiber preform. The fiber pairs each consist of a sample of spun and unspun fiber. These measurements are then compared with theoretical simulations for each fiber to determine the required range of spinning parameters for a given initial linear birefringence. These results should help in optimizing the spinning parameters for producing high-performance spun fibers
Polarization-mode dispersion (PMD) is a serious impairment for high-bit-rate optical telecommunicati...
Part of Technical Digest (CD) (Optical Society of America, 2005), paper OTuA5. Optics InfoBase Confe...
Spinning a fiber is the most viable and used technique to reduce polarization mode dispersion (PMD)....
It is known that the differential group delay (DGD) due to polarization mode dispersion (PMD) can be...
The polarization mode dispersion of spun fibers with randomly varying birefringence was investigated...
We discuss the polarization mode dispersion properties of spun, single-mode, randomly birefringent f...
Polarization mode dispersion causes significant impairment in high bit-rate optical telecommunicatio...
The behavior of Polarization Mode Dispersion (PMD) in spun optical fiber is a topic of great interes...
Abstract: We report the fabrication of a spun holey optical fibre. Our experiments show that the com...
The spinning of single-mode telecommunication fibers is a technique currently and widely used to red...
Abstract—Polarization-mode dispersion (PMD) is a serious im-pairment for high-bit-rate optical telec...
We show that the polarization mode dispersion of a constantly spun, single-mode fiber is strongly in...
Abstract—Spun fibers are increasingly used in telecommunica-tion systems because their polarization-...
We show that the differential group delay of randomly birefringent periodically spun fibers, depends...
It is widely accepted that spinning a fiber while it is drawn is one of the most effective way to re...
Polarization-mode dispersion (PMD) is a serious impairment for high-bit-rate optical telecommunicati...
Part of Technical Digest (CD) (Optical Society of America, 2005), paper OTuA5. Optics InfoBase Confe...
Spinning a fiber is the most viable and used technique to reduce polarization mode dispersion (PMD)....
It is known that the differential group delay (DGD) due to polarization mode dispersion (PMD) can be...
The polarization mode dispersion of spun fibers with randomly varying birefringence was investigated...
We discuss the polarization mode dispersion properties of spun, single-mode, randomly birefringent f...
Polarization mode dispersion causes significant impairment in high bit-rate optical telecommunicatio...
The behavior of Polarization Mode Dispersion (PMD) in spun optical fiber is a topic of great interes...
Abstract: We report the fabrication of a spun holey optical fibre. Our experiments show that the com...
The spinning of single-mode telecommunication fibers is a technique currently and widely used to red...
Abstract—Polarization-mode dispersion (PMD) is a serious im-pairment for high-bit-rate optical telec...
We show that the polarization mode dispersion of a constantly spun, single-mode fiber is strongly in...
Abstract—Spun fibers are increasingly used in telecommunica-tion systems because their polarization-...
We show that the differential group delay of randomly birefringent periodically spun fibers, depends...
It is widely accepted that spinning a fiber while it is drawn is one of the most effective way to re...
Polarization-mode dispersion (PMD) is a serious impairment for high-bit-rate optical telecommunicati...
Part of Technical Digest (CD) (Optical Society of America, 2005), paper OTuA5. Optics InfoBase Confe...
Spinning a fiber is the most viable and used technique to reduce polarization mode dispersion (PMD)....