EP0677902A1

Amplified telecommunication system for wavelength-division multiplexing transmissions.

Abstract

The present invention relates to a telecommunication system including optical amplifiers connected in cascade, particularly adapted for a wavelength division multiplexing transmission, in which a combination of dopants in the fibre core enables a high signal/noise ratio to be achieved for all channels in a predetermined wavelength band, even in the presence of several simultaneously fed signals.

EP0677902A1, drawing sheet 1
Sheet 1 of 7

Term

Term ended

Projected expiry passed 11 April 2015, 11.5 years ago.

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45 claims: 6 independent, 39 dependent

  1. 1
    A method of achieving the control of the optical signal/noise ratio on reception, in a predetermined wavelength band, in an optical telecommunication system comprising:- an optical transmitter, - an optical receiver, - an optical fibre line connecting said transmitter and receiver, and - at least one active-fibre optical amplifier interposed along said line, wherein said active fibre exhibits an emission curve having a high-emission zone in a wavelength range including said predetermined wavelength band, inside which an emission depression relative to the adjacent zones is present, with an improvement consisting in eliminating or reducing said depression of the emission curve through selection and dosing of the dopants in the active fibre.
  2. 9
    An optical telecommunication method comprising the steps of:- generating at least one optical signal at a predetermined wavelength in a wavelength band, - supplying said signal to an optical fibre of an optical telecommunication line, - amplifying said optical signal at least once by at least one active-fibre optical amplifier, and - receiving said signal through a receiver, characterized in that the active fibre of at least one of said amplifiers comprises a main fluorescent dopant and at least one secondary dopant interacting with said main dopant in the glass matrix of the active fibre, generating an amplification gain of said optical signal at said predetermined wavelength in said active-fibre optical amplifier, measured at an input power ≦ -20 dBm, which differs by less than 1.6 dB from the corresponding gain of a signal at a different wavelength in said band, in the absence of filter means.
  3. 10
    An optical telecommunication method comprising the steps of:- generating at least one optical signal at a predetermined wavelength in a wavelength band, - supplying said signal to an optical fibre of an optical telecommunication line, - amplifying said optical signal at least once by at least one active-fibre optical amplifier, and - receiving said signal through a receiver, characterized in that said at least one active-fibre optical amplifier comprises a silica-based active optical fibre the core of which is doped with at least one main fluorescent dopant and at least one secondary dopant, in functional relation with each other, such that the optical noise/signal ratio at the receiver, measured at a 0.5 nm filter width, is not lower than 15 dB for signals at a wavelength included in said band.
  4. 17
    A telecommunication system comprising:- a transmission station generating optical signals in a predetermined wavelength band, - a receiving station, - an optical fibre connecting line between said transmission station and receiving station, and - at least two active-fibre optical amplifiers connected in series along said line, operatively connected to each other for transmitting said optical signals from said transmission station to said receiving station, characterized in that at least one of said optical amplifiers comprises a silica-based active optical fibre having a core doped with at least one main fluorescent dopant and at least one secondary dopant, operatively connected with each other in such a manner that they supply the receiving station with an optical signal/noise ratio, measured at a 0.5 nm filter width, not lower than 15 dB for signals of a wavelength included in said band.
  5. 24
    An active-fibre optical amplifier, comprising:- at least one length of silica-based active fibre, - pumping means for said active fibre, adapted to supply optical pumping power at a pumping wavelength, - coupling means within said active fibre of said optical pumping power and one or more transmission signals, at transmission wavelengths included in a predetermined transmission band, characterized in that said active optical fibre has a doped core with at least one main fluorescent dopant and at least one secondary dopant, in functional relation with each other to such a degree that the maximum gain variation between two signals at different transmission wavelengths in said band, measured at an input power ≦-20 dBm, is lower than 2.5 dB, in the absence of filtering means associated with said active fibre.
  6. 32
    An active optical fibre, in particular for optical telecommunications amplifiers, characterized in that it has a numerical aperture greater than 0.15 and a doped core with at least one main fluorescent dopant and at least one secondary dopant, in functional relation with each other to such an extent that the emission curve of said fibre in a predetermined wavelength band, in the presence of luminous pumping energy supplied to the fibre itself, is clear of depressions of a value higher than 1 dB relative to the emission value in at least one of the adjacent zones in said band.