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Plastics and Polymers for Optical Transmission

Published online by Cambridge University Press:  25 February 2011

L. L. Blyler Jr.
Affiliation:
AT&T Bell Laboratories, Murray Hill, NJ 07974
K. A. Cogan
Affiliation:
Current Address: Department of Chemical Engineering, Stanford University, Stanford, CA 94305
J. A. Ferrara
Affiliation:
Current Address: Materials Science and Engineering Department, Massachusetts Institute of Technology, Cambridge, MA 02139
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Abstract

The current stktus of worldwide research in the use of polymers as active lightwave transmission media is examined. Applications include plastic optical fibers, plastic optical components, polymeric optical fiber sensors and non-linear optical polymers.

Type
Research Article
Copyright
Copyright © Materials Research Society 1987

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References

REFERENCES

[1] Hager, T. C., Brown, R. G. and Derick, B. N., SAE Trans., 76, 75 (1967).Google Scholar
[2] Kaino, T., Jinguji, K. and Nara, S., Appl. Phys. Lett., 42 (7), 567 (1983).CrossRefGoogle Scholar
[3] Product Literature, Eska™ High Performance Plastic Optical Fibers, Mitsubishi Rayon Co., Ltd, Tokyo, Japan.Google Scholar
[4] Glen, R. M., Chemtronics, 1, 98 (1986).Google Scholar
[5] Kaino, T., Fujiki, M., Oikawa, S. and Nara, S., Appl. Opt., 20 (17), 2886 (1981); T. Kaino, M. Fujiki and S. Nara, J. Appl. Phys., 52 (12), 7061 (1981).Google Scholar
[6] Kaino, T., Fujiki, M. and Jinguji, K., Rev. Electric. Commun. Labs, 32 (3), 478 (1984).Google Scholar
[7] Kaino, T., Japan J. Appl. Phys., 24 (12), 1661 (1985).Google Scholar
[8] Schleinitz, H. M., Proc. Int. Wire and Cable Symp., 25, 352 (1977).Google Scholar
[9] Ohtsuka, Y., Koike, Y., Awaji, H. and Tanio, N., Kobunshi Ronbunshu, 42 (4), 265 (1985).CrossRefGoogle Scholar
[10] Kaino, T., Appl. Opt., 24 (23), 4192 (1985).Google Scholar
[11] Japanese Patent JP 59/184272 A2 [84/201002], Novembre 14, 1984.Google Scholar
[12] Japanese Patent JP 60/222804 A2 [85/222804], Novembre 7, 1985.Google Scholar
[13] Japanese Patent JP 60/129710 A2 [85/129710], July 11, 1985.Google Scholar
[14] European Patent Application EP 155567 A2, September 25, 1985.Google Scholar
[15] Tanaka, A., Takahashi, E. and Wakatsuki, N., OFC'86, Atlanta, GA, Optical Society of America, February 24–26, 1986.Google Scholar
[16] Chandross, E. A., Pryde, C. A., Tomlinson, W. J. and Weber, H. P., Appl. Phys. Lett., 24 (2), 72 (1974).CrossRefGoogle Scholar
[17] Auracher, F., Optics Comm., 17 (1), 129 (1976).CrossRefGoogle Scholar
[18] Kurokawa, T., Takato, N. and Katayama, Y., Appl. Opt., 19 (18), 3124 (1980).Google Scholar
[19] Takato, N., Kurokawa, T., Yoshizawa, T. and Nara, S., J. Lightwave Tech., LT–1 (1), 178 (1983).CrossRefGoogle Scholar
[20] Yoshizawa, T. and Kawata, T., Fourth International Conference on Plastics in Telecommunications, Plastics and Rubber Institute, London, UK, September 17–19, 1986.Google Scholar
[21] Ohtsuka, Y., Appl. Phys. Lett., 23 (5), 247 (1973).Google Scholar
[22] Iga, K. and Yamamoto, N., Appl. Opt., 16 (5), 1305 (1977)Google Scholar
[23] Ohtsuka, Y. and Sugano, T., Appl. Opt., 22 (3), 413 (1983).CrossRefGoogle Scholar
[24] Ohtsuka, Y. and Yamamoto, N., Appl. Opt. 16, 1305 (1977).Google Scholar
[25] Ohtsuka, Y., Koike, Y. and Yamazaki, H., Appl. Opt., 20 (2), 280 (1981).Google Scholar
[26] Koike, Y., Kimoto, Y. and Ohtsuka, Y., Appl. Opt., 21 (6), 1057 (1982).Google Scholar
[27] Ohtsuka, Y. and Koike, Y., Appl. Opt., 23 (11), 1774 (1984).CrossRefGoogle Scholar
[28] Ohtsuka, Y. and Koike, Y., Appl. Opt., 24 (24), 4316 (1985).Google Scholar
[29] Koike, Y., Hidaka, H. and Ohtsuka, Y., Appl. Opt., 24 (24), 4321 (1985).Google Scholar
[30] Koike, Y., GRIN '85, Palermo, Italy, September 26–27, 1985.Google Scholar
[31] Wolfbeis, O. S., Posch, H. E. and Kroneis, H. W., Anal. Chem., 57 (13), 2556 (1985).CrossRefGoogle Scholar
[32] Cox, M. E. and Dunn, B., Appl. Opt., 24 (14), 2114 (1985).Google Scholar
[33] Parker, J. W., Cox, M. E. and Dunn, B. S., SPIE, 586, 156 (1985).Google Scholar
[34] U.S. Patent No. 4, 505, 542, March 19, 1985.CrossRefGoogle Scholar
[35] See Nonlinear Optical Properties of Organic and Polymeric Materials, Williams, D. J., ed., ACS Symposium Series No. 233, American Chemical Society, Washington, DC, 1983.Google Scholar
[36] Meredith, G. R., Dusen, J. G. Van and Williams, D. J., Macromolecules, 15, 1385 (1982).CrossRefGoogle Scholar
[37] Singer, K. D., Sohn, J. E., and Lalama, S. J., Appl. Phys. Lett., 49 (5), 248 (1986).Google Scholar