CJR Sheppard Photonics

04/20/04

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10 Photonics

10.1 Optical fibres

10.2 Photoelectronic devices

10.3 Gratings and holography

 

10.1 Optical fibres

E.4. Jordan MP, Kompfner R, Sheppard CJR, Solymar L (1976) Coupling of optical fibres by means of volume holograms, Proc.6th European Microwave Conference, Rome, pp. 438-442.

F. 6. Kompfner, R., Sheppard, C.J.R., Walsh, D., Choudhury, A., Gannaway, J.N., Hale, P.G. (1977) Applications of quantum electronics, Part 2:  The metal coating of optical fibres, OUEL Report No. 1184/77.

F. 7. Kompfner, R., Sheppard, C.J.R., Walsh, D., Choudhury, A., Gannaway, J.N., Hale, P.G. (1977) Applications of quantum electronics, Part 3:  Holographic couplers for optical fibre bundles, OUEL Report No. 1185/77.

D. 21. Hale PG, Sheppard CJR (1978) Production of optical fibres using a vacuum furnace,  Optik 51,  97-99.

 

First optical fibres using a vacuum furnace.

 

D. 25. Almeida JB, Hale PG, Sheppard CJR (1979) On line-metal coating of optical fibres, Optik  53 , 231-233.

 

First optical fibres with metal coating.

 

C. 6.  Hale PG, Almeida JB, Sheppard CJR (1980) On-line metal coating of Si02 fibres using magnetron sputtering,  82nd Meeting of the American Ceramic Society, Chicago, April 1980, in Physics of Fiber Optics, Advances in Ceramics, Vol. 2,  eds B. Bendow, S.S. Mitra, pp. 115-123, American Ceramic Society. ISBN 0 916094 42 1

 

D. 32. Wilson T, Gannaway JN, Sheppard  CJR (1980) Optical fibre profiling using a scanning optical microscope, Opt. Quant. Elect. 12, 341-345.

E.52. Sheppard CJR, Fatemi H (1995) Optical fibre probe microscopy,  Focus on Microscopy '95, Taipei, Taiwan, 18-20 April 1995, Zoological Studies 34, Suppl.1, 91-92

D. 187. Sheppard CJR, Gan XS, Fatemi H (1996) The near-field of a weakly-guiding step-index single-mode fibre, Electronics Letts., 32, 1128-1130

D. 198. Sharma MD, Sheppard CJR (1997) Holmium-doped optical fiber for filter applications,  Applied Optics , 36, 6815-6821

 

10.2 Photoelectronic devices

C. 1. Howorth J, Holtom R, Sheppard CJR, Trawny E  (1976) Thermionic emission from NEA Silicon, Conference on Photoelectric and Secondary Electron Emission, University of Minnesota (1975) Adv. Electronics and Electron Physics  40A, 387-396. ISBN 0 12 014540 5

 

D. 2. Howorth J, Harmer A, Trawny E, Holtom R, Sheppard CJR (1973) Electric field enhancement of escape probability on NEA surfaces, Appl. Phys. Lett. 23, 123-124.

 

D. 3. Howorth J, Sheppard CJR, Holtom R, Harmer AL (1975) Thermionic emission from NEA silicon, J. Appl. Phys. 46, 151-157.

 

D. 4. Howorth J, Folkes J, Palmer I, Holtom R, Sheppard CJR, Trawny E  (1975) Transmission silicon photoemitters and electron multipliers, J. Phys. D: Appl. Phys. 9, 785-794, 2169.

 

E.3. Howorth J, Sheppard CJR, Holtom R, Trawny E (1975) Transmission silicon photoemitters and electron multipliers, Proceedings Int. Conf. on Low Light and Thermal Imaging Systems, London.

 

10.3 Gratings and holography

D. 7.  Sheppard CJR (1976) The application of the dynamical theory of x-ray diffraction to thick hologram gratings,  Int. J. Electronics  41,  365-373.

 

E.4. Jordan MP, Kompfner R, Sheppard CJR, Solymar L (1976) Coupling of optical fibres by means of volume holograms, Proc.6th European Microwave Conference, Rome, pp. 438-442.

F. 7. Kompfner, R., Sheppard, C.J.R., Walsh, D., Choudhury, A., Gannaway, J.N., Hale, P.G. (1977) Applications of quantum electronics, Part 3:  Holographic couplers for optical fibre bundles, OUEL Report No. 1185/77.

D. 26. Cooke DJ, Solymar L, Sheppard CJR (1979) A three-dimensional vectorial theory for volume holograms.  Int. J. Electron. 46, 337-356.

 

D. 27. Solymar L, Sheppard CJR (1979) A two-dimensional theory of volume holograms with electric polarization in the plane of the grating,  J. Opt. Soc. Am. 69, 491-495.

 

E.20. Sheppard CJR, Sheridan JT (1989) Micrometrology of thick structures, International Congress on Optical Science and Engineering Paris, April 1989, Proc. SPIE 1139, 32-39.

 

D. 92. Sheridan JT, Sheppard CJR (1990) An examination of the theories for the calculation of diffraction by square wave gratings:  1. Thickness and period variations for normal incidence, Optik 85, 25-32.

 

D. 93. Sheridan JT, Sheppard CJR (1990) An examination of the theories for the calculation of diffraction by square wave gratings: 2. Angular variation, Optik 85, 57-66.

 

D. 94. Sheridan JT, Sheppard CJR (1990) An examination of the theories for the calculation of diffraction by square wave gratings:  3. Approximate theories, Optik 85, 135-152.

D. 149. Sheridan JT, Sheppard CJR (1994) Modelling of images of square-wave gratings and isolated edges using rigorous diffraction theory, Opt. Commun.105, 367-378.

 

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This site was last updated 04/20/04