Optical Bit Error Rate

Chapter 2.12 - Glass Fiber, An Optical Transmission Medium

2.12   GLASS FIBER, AN OPTICAL TRANSMISSION MEDIUM

Electromagnetic waveguides have been the subject of study in conducting electro-
magnetic waves since the emergence of microwave transmission. These wave-
guides have a rectangular or circular cross section, are hollow, and are millimeters
or centimeters wide and several meters long. A single fiber strand is an electromagnetic
circular waveguide filled with a dielectric, micrometers wide and many kilometers
long. Fiber consists of ultrapure silica glass (SiO2, 70–95 wt%) doped with
specific elements such as germanium, fluorine, phosphorus, and boron, known as
dopants. Dopants are added to adjust the distribution of the refractive index profile
and light-propagation characteristics. The purity of glass fiber is measured by its
very low loss, about 0.35 dB/km at 1310 nm and 0.25 dB at 1550 nm.

The optical fiber consists of two concentric layers. The innermost layer is the silica
core in which the photonic signal propagates. The core is surrounded by another
layer of silica known as cladding. The cladding has a lower refractive index than
the core. Some parameters that pertain to fibers are:

  • Fiber type (multimode, single mode, dispersion compensating)
  • Forward attenuation per kilometer
  • Backward attenuation per kilometer (if asymmetric)
  • Polarization mode dispersion
  • Polarization-dependent loss (PDL)
  • Birefringence
  • Dispersion (chromatic and material)
  • Zero-dispersion wavelength
  • Dispersion flatness over spectrum range
  • Cut-off wavelength

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