Fabrication of optical waveguides and Bragg gratings
A method of writing a waveguide and optionally simultaneously a grating in a sample of photosensitive material comprises providing a sample of material having a region which is photosensitive to light of a specific wavelength, generating a spot of light at the specific wavelength, the spot having a...
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creator | RICHARD BIRD WILLIAMS SAMUEL PAUL WATTS GREGORY DANIEL EMMERSON PETER GEORGE ROBIN SMITH VASSILIOS ALBANIS CORIN B.E GAWITH |
description | A method of writing a waveguide and optionally simultaneously a grating in a sample of photosensitive material comprises providing a sample of material having a region which is photosensitive to light of a specific wavelength, generating a spot of light at the specific wavelength, the spot having a periodic intensity pattern of high and low intensity fringes, and a width which is related to the width of the channel, positioning the spot within the photosensitive region and causing relative movement between the sample and the light spot along the desired path of the waveguide/grating define a channel of altered refractive index by exposing parts of the photosensitive region to the light spot. Modulation of the light spot to produce multiple exposures produces a grating 48, while continuous exposure results in a uniform waveguide 46,50. These structures can be written in straight lines or around curves, and can be accurately overwritten, so that complex optical devices can be produced in a single fabrication step. In materials where exposure to ultraviolet light reduces refractive index, a waveguiding channel can be produced by exposure to UV on each side of the desired channel. |
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Modulation of the light spot to produce multiple exposures produces a grating 48, while continuous exposure results in a uniform waveguide 46,50. These structures can be written in straight lines or around curves, and can be accurately overwritten, so that complex optical devices can be produced in a single fabrication step. 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Modulation of the light spot to produce multiple exposures produces a grating 48, while continuous exposure results in a uniform waveguide 46,50. These structures can be written in straight lines or around curves, and can be accurately overwritten, so that complex optical devices can be produced in a single fabrication step. 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Modulation of the light spot to produce multiple exposures produces a grating 48, while continuous exposure results in a uniform waveguide 46,50. These structures can be written in straight lines or around curves, and can be accurately overwritten, so that complex optical devices can be produced in a single fabrication step. In materials where exposure to ultraviolet light reduces refractive index, a waveguiding channel can be produced by exposure to UV on each side of the desired channel.</abstract><edition>7</edition><oa>free_for_read</oa></addata></record> |
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subjects | OPTICAL ELEMENTS, SYSTEMS, OR APPARATUS OPTICS PHYSICS |
title | Fabrication of optical waveguides and Bragg gratings |
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