EP1575193A2

A method and system for optical superheterodyne detection

Abstract

A system and method for superheterodyne detection in accordance with the invention. The system comprises a first conversion unit (210) for performing a first heterodyne operation on an optical input signal (230) to generate an electrical IF signal (425). A second conversion unit (220) is electrically or optically coupled to the first conversion unit (210). The second conversion unit (220) performs a second heterodyne operation to generate an electrical output signal (240) suitable for signal processing.

EP1575193A2, drawing sheet 1
Sheet 1 of 21

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Projected expiry passed 29 October 2024, 1.9 years ago.

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10 claims: 1 independent, 9 dependent

  1. 1
    A system for superheterodyne detection comprising:a first conversion unit (210) for performing a first heterodyne operation on an optical input signal (230) to generate an electrical IF signal (425);and a second conversion unit (220)electrically coupled to said first conversion unit (210) for performing a second heterodyne operation to generate an electrical output signal (240) suitable for signal processing.
  2. 2
    The system of Claim 1, wherein said first conversion unit (210) comprises:a local oscillator (410) for generating a swept optical local oscillator signal (415);a coupler (420) for coupling said optical input signal (230) and said swept local oscillator signal (415);and a photodetector (421).
  3. 3
    The system of Claim 1, wherein said first conversion unit comprises:an IF amplifier (422);and an IF filter (423).
  4. 4
    The system of Claim 1, wherein said second conversion unit (220) comprises:an electrical local oscillator (430) for generating a fixed electrical local oscillator signal (435);and a mixer (480) coupled to said electrical local oscillator (430) for performing a second heterodyne operation when mixing said electrical IF signal (425) and said fixed electrical local oscillator signal (435) to generate an electrical output signal (240) suitable for signal processing.
  5. 5
    The system of Claim 1, where said signal processing comprises a reconstruction of an optical spectrum of said optical input signal (230).
  6. 6
    The system of Claim 1, further comprising:a processor (470) for processing said electrical output signal to measure optical parameters of said optical input signal (230).
  7. 7
    The system of Claim 1, wherein said first conversion unit (210) reduces the effect of intensity noise.
  8. 8
    The system of Claim 1, wherein said first conversion unit (210) separates an image in said electrical IF signal (425) to improve amplitude accuracy of said optical input signal (230).
  9. 9
    The system of Claim 1, wherein said first conversion unit (210) produces a non-zero electrical IF signal (425).
  10. 10
    The system of Claim 1, wherein said second conversion unit (220) comprises a microwave image rejection mixer (660).