We calculate the asymptotic first-order polarization mode dispersion statistics of constantly spun fibers. We show that in the long length regime the mean differential group delay of constantly spun fibers grows linearly with distance at the same rate as for unspun fibers. Conversely, the short length regime of constantly spun fibers may be much longer, even for limited spin rates
Polarization mode dispersion causes significant impairment in high bit-rate optical telecommunicatio...
We compare the different polarization properties of unspun fibers with respect to spun fibers, consi...
This paper shows how the initial linear birefringence determines the necessary spinning parameters t...
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 (PMD) causes significant impairment for high bit-rate optical telecommu...
Abstract—Spun fibers are increasingly used in telecommunica-tion systems because their polarization-...
We show that the polarization mode dispersion of a constantly spun, single-mode fiber is strongly in...
Spinning is one of the most effective and well-known ways to reduce polarization mode dispersion of ...
We show that the differential group delay of randomly birefringent periodically spun fibers, depends...
Spun fibers are increasingly used in telecommunication systems because their polarization-mode dispe...
Polarization-mode dispersion (PMD) is a serious impairment for high-bit-rate optical telecommunicati...
Abstract—Polarization-mode dispersion (PMD) is a serious im-pairment for high-bit-rate optical telec...
Spun fibers are one of the most viable solutions to polarization mode dispersion. In this paper, the...
Polarization decorrelation in single-mode fibers with randomly varying birefringence is studied. We ...
Polarization mode dispersion causes significant impairment in high bit-rate optical telecommunicatio...
We compare the different polarization properties of unspun fibers with respect to spun fibers, consi...
This paper shows how the initial linear birefringence determines the necessary spinning parameters t...
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 (PMD) causes significant impairment for high bit-rate optical telecommu...
Abstract—Spun fibers are increasingly used in telecommunica-tion systems because their polarization-...
We show that the polarization mode dispersion of a constantly spun, single-mode fiber is strongly in...
Spinning is one of the most effective and well-known ways to reduce polarization mode dispersion of ...
We show that the differential group delay of randomly birefringent periodically spun fibers, depends...
Spun fibers are increasingly used in telecommunication systems because their polarization-mode dispe...
Polarization-mode dispersion (PMD) is a serious impairment for high-bit-rate optical telecommunicati...
Abstract—Polarization-mode dispersion (PMD) is a serious im-pairment for high-bit-rate optical telec...
Spun fibers are one of the most viable solutions to polarization mode dispersion. In this paper, the...
Polarization decorrelation in single-mode fibers with randomly varying birefringence is studied. We ...
Polarization mode dispersion causes significant impairment in high bit-rate optical telecommunicatio...
We compare the different polarization properties of unspun fibers with respect to spun fibers, consi...
This paper shows how the initial linear birefringence determines the necessary spinning parameters t...