Optical processing
First Claim
1. An optical device comprising one or more optical inputs at respective locations, a diffraction grating constructed and arranged to receive light from the or each optical input, a focussing device and a continuous array of phase modulating elements, the diffraction grating and the array of phase modulating elements being disposed in the focal plane of the focussing device whereby diverging light from a single point on the diffraction grating passes via the focussing device to form beams at the array of phase modulating elements, the device further comprising one or more optical output at respective locations spatially separate location from the or each optical input, whereby the diffraction grating is constructed and arranged to output light to the or each optical output.
1 Assignment
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Accused Products
Abstract
To operate an optical device comprising an SLM with a two-dimensional array of controllable phase-modulating elements groups of individual phase-modulating elements are delineated, and control data selected from a store for each delineated group of phase-modulating elements. The selected control data are used to generate holograms at each group and one or both of the delineation of the groups and the selection of control data is/are varied. In this way upon illumination of the groups by light beams, light beams emergent from the groups are controllable independently of each other.
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Citations
6 Claims
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1. An optical device comprising one or more optical inputs at respective locations, a diffraction grating constructed and arranged to receive light from the or each optical input, a focussing device and a continuous array of phase modulating elements, the diffraction grating and the array of phase modulating elements being disposed in the focal plane of the focussing device whereby diverging light from a single point on the diffraction grating passes via the focussing device to form beams at the array of phase modulating elements, the device further comprising one or more optical output at respective locations spatially separate location from the or each optical input, whereby the diffraction grating is constructed and arranged to output light to the or each optical output.
- 2. A method of filtering light comprising applying a beam of said light to a diffraction grating whereby emerging light from the grating is angularly dispersed by wavelength, forming respective parallel beams from said emerging light by passing the emerging light to a focussing device having the grating at its focal plane, passing the respective parallel beams to an SLM at the focal plane of the focussing device, the SLM having a two-dimensional array of controllable phase-modulating elements, selectively reflecting light from different locations of said SLM and passing said reflected light to said focussing device and then to said grating.
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4. A power control device for one or more beams of light in which the or each beam is incident on respective groups of pixels of a two-dimensional SLM, and power-control holograms are applied to the respective groups so that the emergent beams have power reduced by comparison to the respective incident beams.
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5. A method of filtering light comprising spatially distributing the light by wavelength across an array of phase-modulating elements to form plural beams, delineating a group of said phase-modulating elements to be aligned with the centre frequency of a desired channel whereby the group truncates the beams according to wavelength, controlling the group to provide images of the truncated light beams incident on the group at a selected output waveguide wherein the original centres of the truncated light beams are substantially coincident with the centre of the output waveguide.
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6. A device for shaping one or more light beams in which the or each light beam is incident upon a respective group of pixels of a two-dimensional SLM, and the pixels of the or each respective group are controlled so that the corresponding beams emerging from the SLM are shaped as required.
Specification