Nova Patents
EP0203530A2

Optical wavefront sensing system.

Abstract

A wavefront sensor for detecting distortion in light wavefronts is described in which the wavefront is divided into a plurality of subapertures and light amplified or intensified and imaged as spots of light from each subaperture onto a filter mask. The filter mask encodes a predetermined function of the spot intensity distributor onto the light intensity of the spot transmitted through the filter. For spot centroid calculation, the function is linearly variable. Mask embodiments include linearly varying alternate opaque and transparent chevrons, electronically variable chevrons, and quadratically varying chevrons.

EP0203530A2, drawing sheet 1
Sheet 1 of 14

Term

Term ended

Projected expiry passed 22 May 2006, 20.3 years ago.

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27 claims: 6 independent, 21 dependent

  1. 1
    An optical wavefront sensor for detecting wavefront aberration in a beam of light comprising:a) beam divider means for dividing said beam of light into a plurality of subapertures;b) image intensifier means responsive to light from each subaperture for increasing the intensity of such light;c) mask means having a plurality of cells, each of said cells having a directivity characteristic which varies in at least one direction;d) imaging means for imaging the intensified light from each subaperture onto the respective cells of said mask means;e) detector means for detecting the intensity of the light received from each cell of said mask means.
  2. 10
    Apparatus comprising:a) a beam divider means for dividing a light beam into a plurality of subapertures of light;b) image intensifier means responsive to light from each subaperture for amplifying the intensity of such light;c) array means comprising a plurality of cells each having a directivity characteristic which varies in at least one direction;d) imaging means for imaging the intensified light from each subaperture onto the respective cells of the array means;e) first detector means for detecting the intensity of the light received from each cell of the array and producing a first signal corresponding thereto;f) second detector means for detecting the intensity of the light received from the image intensifier and producing a second signal corresponding thereto;g) calculator means for calculating the ratio of the first and second signals.
  3. 13
    An optical wavefront sensor for detecting wavefront aberration in a beam of light comprising:a) means for dividing a beam of light into a plurality of subaperture components;b) lens means for imaging said subaperture components;c) photoelectronic means responsive to the imaged light from each subaperture to convert said imaged light into electron beams;d) means for increasing the energy contained in said electron beams;e) electron sensitive means for determining the spatial distribution of energy in said electron beams;andh) electronic means for determining the wavefront aberration from the response of said electron sensitive means.
  4. 19
    A method for detecting wavefront aberration in an input beam of light comprising:a) modulating a reference beam;b) combining said reference beam with an input beam to form a combined beam;c) dividing said combined beam into a plurality of subaperture components;d) imaging said subaperture components on an image intensifier;e) increasing the intensity of such light in said image intensifier;f) imaging the intensified light from each subaperture onto photosensitive means;g) detecting the light distribution characteristics of each of the intensified focused subaperture beams;andh) determining the wavefront aberration from the response of said photosensitive means.
  5. 22
    An optical wavefront sensor for detecting wavefront aberration in a beam of light comprising:a) beam divider means for dividing said beam of light into a plurality of subapertures;b) image intensifier means responsive to light from each subaperture for increasing the intensity of such light;c) imaging means for imaging intensified light from each subaperture onto an image spreading means;d) position sensitive detector means for detecting the position of the spread image for each subaperture.
  6. 24
    A mask for encoding a predetermined function onto the intensity of a beam of light passing through the mask comprising an array of cells each cell having a plurality of alternate opaque and transparent chevrons.