Claims
- 1. An optical system comprising two arrays of optical devices, and means for making individual and simultaneous optical connections each of which involves the passage of light between each selected device of one array and one selected device of the other array to the exclusion of unselected devices, said means comprising at least one phase grating plate in which there are formed a series of volume phase gratings by incidence of complementary reference beams on a holographic medium at different angles, all the phase gratings being of the reflecting type, and the arrangement being such that said individual connections are respectively made via different phase gratings in at least one phase grating plate.
- 2. A first form of optical system according to claim 1 comprising two arrays of optical devices and one phase grating plate all fixed relative to each other, there being formed in the phase grating plate a series of volume phase gratings, each grating being such as to reflect light between a specific device in one array and a specific device in the other array.
- 3. A second form of optical system according to claim 1 comprising two arrays of optical devices and two phase grating plates respectively fixed relative to the two arrays, there being formed in each plate a series of volume phase gratings, the arrangement being such that said individual connections are respectively made via different phase gratings in each phase grating plate, and the light passes between the phase grating plates as a plane wave.
- 4. An optical system according to claim 1 in which the at least one phase grating plate comprises a body of holographic medium in plate-like form.
- 5. An optical system according to claim 1 in which at least one array of optical devices comprises the ends of a bundle of optical fibres.
- 6. A method of making a phase grating plate for a first form of optical system comprising arranging in relatively fixed positions two arrays of optical devices and a body of a material capable of forming a volume phase grating, and forming in said body in turn a series of volume phase gratings corresponding respectively to the required individual optical connections between each selected device in one array and one specific device in the other array to the exclusion of unspecified devices, each phase grating being formed by causing a beam of coherent light to pass between the relevant two devices in the two arrays, the beam passing first in one sense through said body and then being reflected to pass in the opposite sense through said body, whereby the passage of the incident and reflected beams produces in the body an interference pattern which is recorded by the body to form a volume phase grating of the reflecting type.
- 7. A method according to claim 6 in which the body of material requires developing and fixing in order to fix permanently the refractive index changes caused by exposure to the interference patterns.
- 8. A method according to claim 7 in which the body of material is a body of holographic medium in plate-like form.
- 9. A method according to claim 6 in which at least one array of optical devices comprises the ends of a bundle of optical fibres and the phase grating plate is made by transmitting a beam from a laser device along each fibre in turn.
Priority Claims (1)
Number |
Date |
Country |
Kind |
40593/75 |
Oct 1975 |
GBX |
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Parent Case Info
This is a continuation, of application Ser. No. 728,915 filed Oct. 4, 1976, now abandoned.
US Referenced Citations (2)
Number |
Name |
Date |
Kind |
3666345 |
Maslowski |
May 1972 |
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3975082 |
Winzer |
Aug 1976 |
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Non-Patent Literature Citations (1)
Entry |
Nishihara et al., "Holocoupler: A Novel Coupler for Optical Circuits," IEEE Journal of Qu. Elect., vol. QE-11, No. 9, Sep. 1975, pp. 794-796. |
Continuations (1)
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Number |
Date |
Country |
Parent |
728915 |
Oct 1976 |
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