參考文獻 |
參考文獻
1. M. Zukic and K. H. Guenther, “Optical Coatings with Graded Index Layers for High Power Laser Applications,” Proc. Soc. Photo-Opt. Instrum. Eng. 895, pp. 271-277(1988).
2. W. H. Southwell, “Gradient-Index Antireflection Coatings,” Opt. Lett. 8, pp. 584-586(1983).
3. W. H. Southwell, “Spectral response calculations if rugate filters using coupled-wave theory,” J Opt. Soc. Am. A5, 1558-1564(1988).
4. B. G. Bovard, “Rugate filter theory: an overview,” Appl. Opt. 32, 28, pp. 5427-5442(1993).
5. R. Jacobsson, “Inhomogeneous and Co-evaporated Homogeneous Film for Optical Applications,” Physics of Thin Film, 8, pp.51-98(1975).
6. Tae Uk Ryu, Sung Hong Hahn, Sok Won Kim, Eui Jung Kim, “Optical, mechanical and thermal properties of MgF2-ZnS and MgF2-Ta2O5 composite thin films deposited by co-evaporation,” Opt. Eng. 39 (12), pp. 3207-3213 (2000).
7. Feldman, E. N. Farabaugh, “W. K. Haller, D. M. Sanders and R. A. Stempniak, Modifying structure and properties of optical thin film by co-evaporation,” J. Vac. Sci. Technol. A, 4 (6), pp.2969 (1986).
8. 陳至信, “二氧化鈦薄膜性質調變與製程控制,” 國立清華大學電機工程研究所博士論文(1996).
9. M. Cevro, “Ion-beam sputtering of (Ta2O5)1-X(SiO2)X composite thin film,” Thin Solid Film 258, pp. 91-103 (1995).
10. 李正中, “薄膜光學鍍膜技術,” 藝軒圖書出版社, 1999年.
11. E. Delano, “Fourier Synthesis of Multilayer,” J. Opt. Soc. Am. 57, pp. 1529 (1967).
12. L. Sossi, Eesti NSV Tead. Akad. Toim. Fuus. Mat. 23, pp. 229(1974)
13. J. A. Doborwolski and D. Lowe, “Optical thin film synthesis program based on the use of Fourier transforms,” Appl. Opt. 17 (19), pp. 3039 (1978).
14. B. G. Bovard, “Derivation of a matrix describing a rugate dielectric thin film,” Appl. Opt. 27, 10, pp.1998-2005(1988).
15. 何坤榮, “以傅立葉轉換作為光學薄膜設計,” 國立中央大學光電科學研究所碩士論文(1994).
16. J. A. Dobrowolski and R. A. Kemp,”Refinement of optical multiplayer systems with different optimization procedures,” Appl. Opt. 29, 19, pp.2876-2893(1990).
17. J. A. Dobrowolski, “Completely Automatic Synthesis of Optical Thin Film Systems,” Appl. Opt. 4, pp.937-946(1965).
18. J. A. Dobrowolski, “Versatile computer program for absorbing optical thin film systems,” Appl. Opt. 20, pp.74-81(1981).
19. W. H. Southwell, “Coating design using very thin high- and low-index layers,” Appl. Opt. 24, pp.457-460(1985).
20. J. A. Dobrowolski, “Comparsion of the Fourier transform and flip-flop thin film synthesis methods,” Appl. Opt. 20, pp.74-81(1986).
21. Zdeněk Knittl, “Optics of Thin Films,” John Wiley & Sons. Ltd, 1976.
22. W. H. Southwell and Randolph L. Hall, “Rugate filter sidelobe suppression using quintic and rugated quintic matching layers,” Appl. Opt. 28, pp. 2949-2951(1989).
23. W. H. Southwell, “Using apodization functions to reduce sidelobes in rugate filters,” Appl. Opt. 28, pp.5091-5094(1989).
24. Henrik Fabricius, “Gradient-index filters: designing filters with steep skirts, high reflection and quintic matching layers,” Appl. Opt. 31, pp. 5191-5196(1992).
25. P. G. Verly and J. A. Dobrowolski, “Iterative correction process for optical thin film synthesis with the Fourier transform method,” Appl. Opt. 29, pp. 3672-3684(1990).
26. J. C. Manifacier, J. Gasiot and J. P. Fillard, “A simple method for the determination of the optical constant n, k and the thickness of the weakly absorbing thin film,” J. Phy. E:Sci. Inst., 9 pp. 1002(1976).
27. Tang Q., 1997, “Study on the optical properties originator by the Microstructure of thin oxide film,” Ph. D. dissertation, Kobe Design University, Japan.
28. Alexander V. Tikonravov, “Some theoretical aspects of thin film optics and their applications,” Appl. Opt. 32 , pp. 5417–5426 (1993). |