Nova Patents
EP1394635A2

Holographic printer

Abstract

A single method and apparatus for producing many of the most common types of hologram from digital data is disclosed. In one embodiment the data are generated entirely by a computer as a 3-D (animated) model. In another embodiment the data are generated from multiple 2-D camera images taken of a real 3-D (moving) object or scene from a plurality of different camera positions. The data are digitally processed and displayed on a small high resolution spatial light modulator (SLM). A compact low energy pulsed laser, which avoids the usual vibration problems encountered at high rates of production and the installation in normal working environments, is used to record composite holograms on an holographic emulsion using a special optical design. The present invention permits the creation of restricted or full parallax master transmission or reflection type composite holograms, known as H1 holograms, that can be copied using traditional methods to produce full or single colour rainbow white-light transmission holograms, achromatic white-light transmission holograms or single or full-colour white-light reflection holograms. Alternatively the same invention and apparatus permits the direct writing of full or single colour rainbow white-light transmission composite holograms, achromatic white-light transmission composite holograms or single or full-colour white-light reflection composite holograms without the need to pass through the intermediate stage of the H1 transmission hologram. The present invention allows the creation of a compact rugged machine that is capable of producing holograms covering a large size range. In addition the invention produces holograms that can be tiled together to form composite holograms much larger than the component panels.

EP1394635A2, drawing sheet 1
Sheet 1 of 18

Term

Term ended

Projected expiry passed 8 December 2020, 5.8 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

8 claims: 5 independent, 3 dependent

  1. 1
    A holographic printer for directly writing 1-step white-light viewable holograms, comprising:a pulsed laser source (200) arranged to produce a laser beam at a first wavelength, said laser beam being split into an object beam (202) and a reference beam (235) which is mutually coherent with said object beam (202);a spatial light modulator (212) wherein, in use, said object beam illuminates said spatial light modulator (212);a lens system (219) for writing a holographic pixel (221) of a hologram on to a photosensitive medium (262), said lens system (219) being arranged downstream of said spatial light modulator (212) and being arranged to focus said object beam to a minimum beam waist (266);andpositioning means for positioning a photosensitive medium (262) at said minimum beam waist (266);characterised in that: said lens system (219) has an effective field of view (1103) selected from the group consisting of: (i) greater than 70 degrees;(ii) greater than 75 degrees;(iii) greater than 80 degrees;and (iv) at least 85 degrees;andwherein said holographic printer further comprises: means for modifying images sent to said spatial light modulator (212) so as to at least partially correct for inherent optical distortions of said lens system (219).
  2. 5
    A holographic printer as claimed in any preceding claim, wherein said laser source is arranged to additionally produce laser beams at second and third wavelengths, said first, second and third wavelengths each differing from one another by at least 30 nm.
  3. 6
    A holographic printer as claimed in any of claims 1-4, further comprising a second and a third laser source for producing laser beams at second and third wavelengths, said first, second and third wavelengths each differing from one another by at least 30 nm.
  4. 7
    A holographic printer as claimed in claims 5 or 6, further comprising a first lens system for use at said first wavelength, a second lens system for use at said second wavelength, and a third lens system for use at said third wavelength, wherein said first, second and third lens systems are arranged so that a desired lens system may be automatically selected.
  5. 8
    A method of directly writing 1-step white-light viewable holograms, comprising:providing a pulsed laser source (200) arranged to produce a laser beam at a first wavelength;splitting said laser beam into an object beam (202) and a reference beam (235) which is mutually coherent with said object beam (202);illuminating a spatial light modulator (212) with said object beam (202);providing a lens system (219) for writing a holographic pixel (221) of a hologram on to a photosensitive medium (262), said lens system (219) being arranged downstream of said spatial light modulator (212) and being arranged to focus said object beam to a minimum beam waist (266);andpositioning a photosensitive medium (262) at said minimum beam waist (266);characterised in that: said lens system (219) has an effective field of view (1103) selected from the group consisting of: (i) greater than 70 degrees;(ii) greater than 75 degrees;(iii) greater than 80 degrees;and (iv) at least 85 degrees;andwherein said method further comprises: modifying images sent to said spatial light modulator (212) so as to at least partially correct for inherent optical distortions of said lens system (219).