Hostname: page-component-76fb5796d-25wd4 Total loading time: 0 Render date: 2024-04-26T08:51:09.296Z Has data issue: false hasContentIssue false

Sol-Gel Synthesis of thin Films for use as Planar Waveguides*

Published online by Cambridge University Press:  28 February 2011

G.W. Dale
Affiliation:
Materials Science and Engineering Department,Arizona Materials Laboratory,University of Arizona,Tucson,Arizona 85721
H.H. Fox
Affiliation:
Materials Science and Engineering Department,Arizona Materials Laboratory,University of Arizona,Tucson,Arizona 85721
Brian J.J. Zelinski
Affiliation:
Optical Data Storage Center,Optical Sciences Center,University of Arizona,Tucson,Arizona 85721
Laura Weller-Brophy
Affiliation:
Optical Data Storage Center,Optical Sciences Center,University of Arizona,Tucson,Arizona 85721
Get access

Extract

SiO2-TiO2 sol-gel solutions and synthesis techniques have been developed to produce thin films of proper index, thickness and quality for use as planar waveguides. The composition of the synthesized films ranged from 50 to 68 mole % TiO2 and produced layers with indices ranging from 1.7 to 1.8. Final film thicknesses ranged from 1000 to 3000 A and varied as a function of the coating chemistry and conditions. Also, changes in film shrinkage and index with heat treatment were determined and compared to literature data on similar films used as antireflective coatings. Finally, confirmation of the waveguiding qualities of these films was made through prism coupler measurements conducted by the University of Arizona Optical Sciences Center.

Type
Research Article
Copyright
Copyright © Materials Research Society 1990

Access options

Get access to the full version of this content by using one of the access options below. (Log in options will check for institutional or personal access. Content may require purchase if you do not have access.)

Footnotes

*

This paper was presented at the Fourth International Conference on Ultrastructure Processing of Ceramics, Glasses, and Composites, February 19–24, 1989, Tucson, AZ. In was inadvertently omitted from publication in the Proceedings of that Conference.

References

REFERENCES

1. Brusasco, R., et al. , Mater. Res. Bull., 21 (1986) 301.Google Scholar
2. Brinker, C.J. and Harrington, M.S., Solar Energy Materials, .(1981) 159.Google Scholar
3. Pettit, R.B. et al. , Solar Cells, 15 (1985) 267.Google Scholar
4. Yoldas, B.E., US Pat. #4,346,131 Aug 24, 1982.Google Scholar
5. Tiefenthaler, K. et al. , Proc. Soc. Photo-Opt. Instrum. Eng., 401 (1983) 165.Google Scholar
6. Heuberger, K. and Lukosz, W., Appl. Optics, 25 (1986) 1499.Google Scholar
7. Lukosz, W. and Tiefenthaler, K., Optics Letters, 8 (1983) 537.Google Scholar
8. Tohge, N. et al. , J. Non-Crys. Solids, 100 (1988) 501.Google Scholar
9. Roncone, R.L., Weller-Brophy, L., and Zelinski, B.J.J., “Sol-gel Synthesis of Planar Optical Waveguides and Integrated Components,” Fourth International Conference on Ultrastructure Processing of Ceramics, Glasses, and Composites February Tucson, AZ.Google Scholar
10. Sanchez, C. et al. , J. Non-Crys. Solids, 100 (1988) 65.Google Scholar
11. Schmidt, H., J. Non-Crys. Solids, 100 (1988) 51.Google Scholar