2003Unpublished venueRequires access

Scaling and statistical dependencies of second-order polarization mode dispersion in optical fibers

L.E. Nelson, R.M. Jopson, H. Kogelnik, G.J. Foschini

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Abstract

Muller-matrix-method measurements of fibers with mean differential group delays (DGD) ranging from 1.3 ps to 17.0 ps and simulations confirm that the depolarization scales with the mean DGD while the polarization-dependent chromatic dispersion scales with the square of the mean DGD.

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What this paper is about

Muller-matrix-method measurements of fibers with mean differential group delays (DGD) ranging from 1.3 ps to 17.0 ps and simulations confirm that the depolarization scales with the mean DGD while the polarization-dependent chromatic dispersion scales with the square of the mean DGD.

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Available abstract

Muller-matrix-method measurements of fibers with mean differential group delays (DGD) ranging from 1.3 ps to 17.0 ps and simulations confirm that the depolarization scales with the mean DGD while the polarization-dependent chromatic dispersion scales with the square of the mean DGD.

Key concepts: Polarization mode dispersion, Differential group delay, Scaling, Modal dispersion, Dispersion (optics), Optics, Multi-mode optical fiber, Ranging

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