Nova Patents
EP1517462A2

Tunable dispersion compensator

Abstract

A method and apparatus for implementing a colorless polarization independent Mach-Zehnder-interferometer (MZI)-based tunable dispersion compensator (TDC) that has only three MZI stages (two in a reflective MZI-TDC) and two adjustable couplers which are responsive to one control voltage, making it compact, low power, and simple to fabricate, test, and operate. Polarization independence is obtained by using a half-wave plate positioned across the midpoints of the two path lengths of middle stage MZI of the three stage MZI-TDC and by using a quarter-wave plate in front of a reflective facet of the reflective MZI-TDC. A cascaded MZI-TDC arrangement with also only a single control is formed by cascading two MZI-TDC arrangements and driving all adjustable couplers with the same control signal.

EP1517462A2, drawing sheet 1
Sheet 1 of 7

Term

Term ended

Projected expiry passed 7 September 2024, 2 years ago.

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12 claims: 4 independent, 8 dependent

  1. 1
    A tunable chromatic optical signal dispersion compensator comprising three cascaded Mach-Zehnder interferometers, MZIs, a first MZI including a fixed 50/50 coupler for receiving an input optical signal, a second MZI including a first adjustable coupler that is shared with the first MZI and a second adjustable coupler that is shared a third MZI, the second MZI further including a half-wave plate positioned across the midpoints of the two path lengths of the second MZI so as to exchange the TE and TM polarizations of the optical signals passing through the two path lengths, the third MZI including a fixed 50/50 coupler for outputting a dispersion-adjusted output optical signal and wherein said first and second shared adjustable couplers are adjusted with equal coupling ratios using a single control signal to provide adjustable dispersion compensation to the output signal.
  2. 7
    A reflective tunable chromatic optical signal dispersion compensator comprising a first MZI including a fixed 50/50 coupler for receiving an input optical signal at a first port and an adjustable coupler, that is shared with a second reflective MZI, the path-length difference between the two arms in the second MZI is equal to that of the first MZI and wherein the adjustable coupler is responsive to a control signal for controlling the amount of signal dispersion added by said compensator to the input optical signal to form the output optical signal.
  3. 9
    A polarization independent tunable chromatic optical signal dispersion compensator, TDC, apparatus comprising a cascaded arrangement of a first TDC and a second TDC, each TDC comprising a first MZI including a fixed 50/50 coupler for receiving an input optical signal, a second MZI including a first adjustable coupler that is shared with the first MZI and a second adjustable coupler that is shared a third MZI, and the third MZI including a fixed 50/50 coupler for outputting a dispersion-adjusted output optical signal and    wherein said first and second shared adjustable couplers in the first and TDC and the second TDC are all adjusted with equal coupling ratios using a single control signal to provide adjustable dispersion compensation to the output signal.
  4. 11
    A reflective TDC comprising of a first MZI including a fixed 50/50 coupler for receiving an input optical signal, a second MZI including a first adjustable coupler that is shared with the first MZI and a second adjustable coupler that is shared a third MZI, and a third MZI including a fixed 50/50 coupler for outputting a dispersion-adjusted output optical signal, connected to a reflector such that the signal passes twice through the MZI arrangement