Nova Patents
EP0405974A2

Holographic operating optical apparatus.

Abstract

The invention is directed to holographic apparatus having an interferometer for concurrently irradiating an image recording medium (6) by a writing reference light (12) composed of spherical or plane wave and a signal light (11) containing image information (4) to interfere with each other to record a hologram, and means for irradiating the hologram by a reading reference light (13) in the opposite direction of the reference light to thereby reconstruct the image information. The image recording medium (6) is comprised of a photoconductive layer, an optical reflective layer, a pair of liquid crystal alignment layers, a ferroelectric liquid crystal layer having bistable memory characteristic between its optical reflectivity and an applied voltage, means for applying the voltage and a pair of transparent substrates. Particularly, the interferometer is Mach-Zehnder type which includes within its signal light forming path an optical shutter, means for entering an image information and imagery optical system for optionally optical Fourier transforming the input image information and then enlarging the same form the image on an optical writing face of the light addressed liquid crystal light valve. By such construction, an extremely small holographic apparatus can be obtained so as to record and read the hologram in real time.

EP0405974A2, drawing sheet 1
Sheet 1 of 14

Term

Term ended

Projected expiry passed 28 June 2010, 16.2 years ago.

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

9 claims: 6 independent, 3 dependent

  1. 1
    A holographic apparatus having an interferometer for irradiating an image recording medium concurrently by a reference light composed of spherical wave or plane wave and a signal light containing image information to interfere with each other to form thereon a hologram, and means for irradiating the hologram by a reading light in the opposite direction of the reference light to reconstruct the image information, characterized in that the image recording medium comprises a light addressed liquid crystal light valve composed of a photoconductive layer, an optical reflective layer, a pair of liquid crystal alignment layers, a ferroelectric liquid crystal layer having bistable memory characteristic between its optical reflectivity and an applied voltage, means for applying the voltage, and a pair of transparent substrates.
  2. 4
    An optical interconnection apparatus for recording interference fringes caused between coherent signal input light and reference light on a hologram recording medium to form a hologram and for selectively reconstructing an output light from the hologram to effect optical interconnection between the input and output lights, characterized in that the apparatus includes an optical system generating signal input lights having optical shutters for controlling block and transmission of light for generating more than one signal input light, and the hologram recording medium comprises a light addressed liquid crystal liquid valve composed of a photoconductive layer, an optical reflective layer, a pair of liquid crystal alignment layers, a ferroelectric liquid crystal layer having bistable memory characteristic between its reflectivity and an applied voltage, means for applying the voltage, and a pair of transparent substrates.
  3. 5
    An optical correlation apparatus for effecting optical correlation processing of two-dimensional image with using coherent light so as to carry out automatically recognition and measurement of a given pattern, characterized by:means for converting at least one code image and at least one input image into corresponding coherent code image and coherent input image;means for Fourier transforming the coherent code image and the coherent input image into Fourier code image and Fourier input image independently from each other;means for enabling a coherent reference light of spherical wave or plane wave to interfere with the Fourier code image to form a Fourier code hologram;means including a binary spatial light modulator for converting the Fourier code hologram into a binarized intensity hologram image and recording the same;means for reading and binarized intensity hologram recorded on the binary spatial light modulator with using the Fourier input image;and means for Fourier transforming the read binarized intensity hologram into a correlation image and for converting the correlation image into a corresponding output signal.
  4. 7
    A method of driving an optical correlator having means for converting at lest one code image and at least one input image into corresponding coherent code image and coherent input image, means for Fourier transforming the coherent code image and coherent input image independently of each other into Fourier code image and Fourier input image, means for enabling a coherent reference light having a spherical wave or plane wave to interfere with the Fourier code image to form Fourier holographic fringes, a light addressed ferroelectric liquid crystal light valve for binarizing the Fourier holographic fringes and recording the binarized ones in the form of a binarized intensity hologram, the light valve being composed of a hydrogenated amorphous silicon photoconductive layer, an optical reflection layer having a given transmittance, a pair of liquid crystal alignment layers, a ferroelectric liquid crystal layer having bistable memory characteristic between its reflectivity and an applied voltage, means for applying the voltage and a pair of transparent substrates, means for reading the binarized intensity hologram recorded on the light addressed ferroelectric liquid crystal light valve with using a reading light from the Fourier input image, and means for Fourier transforming the read binarized intensity hologram into a correlation image and for photoelectrically converting the correlation image into a corresponding output signal, characterized in that while continuously irradiating the light addressed ferroelectric liquid crystal light valve by a writing light which forms the Fourier holographic fringes and the reading light which forms the Fourier input image, the voltage application means is operated to continuously apply to the light addressed ferroelectric liquid crystal light valve a pulse voltage such that voltage polarity relative to the hydrogenated amorphous silicon photoconductive layer sequentially and cyclicly changes positive, negative and zero, erasing of the image is carried out during the positive voltage is applied, writing of the image is carried out during the negative voltage is applied reading of the image is carried out during the negative voltage or zero voltage is applied, and the pulse voltage is controlled to adjust its amplitude, frequency and pulse width during the positive, negative and zero voltage are applied so as to regulate an intensity of the correlation image.
  5. 8
    A method of driving a holography apparatus of Fourier transform type having means for converting at least one input image into a corresponding coherent input image, means for Fourier transforming the coherent input image into Fourier input image, means for enabling a coherent reference light having a spherical wave or plane wave to interfere with the Fourier input image to form Fourier holographic fringes, a light addressed ferroelectric liquid crystal light valve for binarizing the Fourier holographic fringe and recording the binarized ones in the form of a binarized intensity hologram, the light valve being composed of a hydrogenated amorphous silicon photoconductive layer, an optical reflection layer having a given transmittance, a pair of liquid crystal alignment layers, a ferroelectric liquid crystal layer having bistable memory characteristic between its reflectivity and an applied voltage, means for applying the voltage and a pair of transparent substrates, means for reading the binarized intensity hologram recorded on the light addressed ferroelectric liquid crystal light valve with using a coherent reading light having spherical wave or plane wave, and means for Fourier transforming the read binarized intensity hologram image into a reconstructed image and for photoelectrically converting the reconstructed image into a corresponding output signal, characterized in that while continuously irradiating the light addressed ferroelectric liquid crystal light valve by a writing light which forms the Fourier holographic fringes and the coherent reading light of spherical or plane wave, means for applying the voltage is operated to continuously apply to the light addressed ferroelectric liquid crystal light valve a pulse voltage such that voltage polarity relative to the hydrogenated amorphous silicon photoconductive layer sequentially and cyclicly changes positive, negative and zero, erasing of the image is carried out during the positive voltage is applied, writing of the image is carried out during the negative voltage is applied and reading of the image is carried out during the negative voltage or the zero voltage is applied, and the pulse voltage is controlled to adjust its amplitude, frequency and pulse width during the positive, negative and zero voltage are applied so as to regulate an intensity or quality of the reconstructed image.
  6. 9
    A method of driving a holography apparatus having means for converting at least one input image into a corresponding coherent input image, means for enabling a coherent reference light having a spherical wave or plane wave to interfere with the coherent input image to form holographic fringes, an light addressed ferroelectric liquid crystal light valve for binarizing the holographic fringes and recording the binarized ones in the form of a binarized intensity hologram the light valve being composed of a hydrogenated amorphous silicon photoconductive layer, an optical reflection layer having a give transmittance rate, a pair of liquid crystal alignment layer, a ferroelectric liquid crystal layer having bistable memory characteristic between its reflectivity and an applied voltage, means for applying the voltage and a pair of transparent substrates, means for reading the binarized intensity hologram recorded on the light addressed ferroelectric liquid crystal light valve with using a coherent reading light of spherical or plane wave, and means for converting the read binarized intensity hologram into a corresponding output signal, characterized in that while continuously irradiating the light addressed ferroelectric liquid crystal light valve by a writing light which forms the holographic fringes and the coherent reading light of spherical or plane wave, the voltage application means is operated to continuously apply to the light addressed ferroelectric liquid crystal light valve a pulse voltage such that voltage polarity relative to the hydrogenated amorphous silicon photoconductive layer sequentially and cyclicly changes positive, negative and zero, erasing of the image is carried out during the positive voltage is applied, writing of the image is carried out during the negative voltage is applied and reading of the image is carried out during the negative voltage or zero voltage is applied, and the pulse voltage is controlled to adjust its amplitude, frequency and pulse width during the positive, negative and zero voltage are applied so as to regulate an intensity or quality of the image.