EP0903876A1

Optical fiber communication system with a distributed raman amplifier and a remotely pumped er-doped fiber amplifier

Abstract

The disclosed optical fiber communication system (10) comprises a remotely pumped erbium-doped fiber amplifier (EDFA 24). The pump radiation is de-tuned with respect to wavelength, the wavelength being selected longer than both the optimal wavelengths for pumping the EDFA and for producing Raman gain in the transmission fiber (23), respectively. Such de-tuning results in improved over-all system performance through reduced multi-path interference. Exemplarily, the pump radiation has wavelength in the range 1490-1510 nm.

EP0903876A1, drawing sheet 1
Sheet 1 of 5

Term

Term ended

Projected expiry passed 18 August 2018, 8.1 years ago.

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9 claims: 3 independent, 6 dependent

  1. 1
    An optical fiber communication system (10) comprising a transmitter (11), a receiver (12), an optical fiber transmission link (13) that signal-transmissively connects the transmitter and the receiver and comprises at least one erbium-doped optical fiber amplifier (24), and a source of pump radiation of wavelength λ p less than a signal wavelength λ s , said source (21) of pump radiation being spaced from said erbium-doped optical fiber amplifier, with the pump radiation being transmitted to the erbium-doped optical fiber amplifier through at least a portion of said optical fiber transmission link that comprises silica-based single mode optical fiber selected to provide Raman gain at the signal wavelength;CHARACTERIZED IN THAT λ p is selected to be longer than an optimal wavelength λ p,Raman for producing said Raman gain, and also to be longer than an optimal wavelength λ p,EDFA for pumping the Er-doped optical fiber amplifier, with λ p selected to result in reduced multi-path interference.
  2. 7
    A method for providing optical pump power to an optical fiber communication system having a transmission path that includes at least one rare-earth doped optical fiber amplifier, operating at a first pump wavelength, that by itself provides a system response at a given optimization level, said method comprising the steps of:remotely pumping said communication system through at least a portion of said transmission path to generate Raman gain in said transmission path portion and stimulated gain in said rare-earth doped optical fiber amplifier at a second pump wavelength, wherein said second pump wavelength is selected to be greater than said first pump wavelength and greater than a third pump wavelength generating a substantially maximum amount of Raman gain in said transmission path portion.
  3. 8
    A method for providing optical pump power to an optical fiber communication system having a rare-earth doped optical fiber amplifier and a Raman amplifier such that a given level of multipath interference (MPI) is produced when said amplifiers are pumped at a first wavelength that is less than a signal wavelength, said method comprising the steps of:selecting a pump wavelength greater than said first wavelength;remotely pumping said rare-earth doped optical fiber amplifier and said Raman amplifier at said pump wavelength so that MPI is produced at a level below said given level of MPI.