Optical Waveguide Components
Weimin Zhou, Hongen P. Shen, Jagadeesh Pamulapati,
Mitra Dutta,
Jagadeesh Pamulapati
U.S. Army Research Laboratory, Adelphi, MD
Search for more papers by this authorMitra Dutta
U.S. Army Research Office, Research Triangle Park, NC
Search for more papers by this authorWeimin Zhou, Hongen P. Shen, Jagadeesh Pamulapati,
Mitra Dutta,
Jagadeesh Pamulapati
U.S. Army Research Laboratory, Adelphi, MD
Search for more papers by this authorMitra Dutta
U.S. Army Research Office, Research Triangle Park, NC
Search for more papers by this authorFirst published: 27 December 1999
Abstract
The sections in this article are
- 1 Waveguide Theory
- 2 Waveguide Devices for Emission, Amplification, and Detection
- 3 Optical Waveguide Modulators and Switches
Bibliography
- 1 P. E. Green, Jr. Fiber Optic Networks, Englewood Cliffs, NJ: Prentice-Hall, 1993, and references cited in.
- 2 N. S. Kapany Fiber Optics Principles and Applications, New York: Academic Press, 1967.
- 3 D. B. Anderson Optical and Electro-optical Information Processing, 221, Cambridge, MA: MIT Press, 1965.
- 4 N. S. Kapany J. J. Burke Optical Waveguides, New York: Academic Press, 1972.
- 5 D. Marcuse Light Transmission Optics, Princeton, NJ: Van Nostrand Reinhold, 1972.
- 6 R. N. Hall et al. Phys. Rev. Lett., 9: 366–367, 1962.
- 7 R. N. Hall IEEE Trans. Electron Dev., ED-23: 700–704, 1976.
- 8 A. Yarive R. C. C. Leite Appl. Phys. Lett., 2: 57–59, 1963.
- 9 S. E. Miller Bell Syst. Tech. J., 48 (7): 2059, 1969.
- 10 H. Nishihara M. Haruna T. Suhara Optical Integrated Circuits, R. E. Fischer and W. J. Smith (eds.), New York: McGraw-Hill, 1987.
- 11 R. G. Hunsperger Integrated Optics: Theory and Technology, T. Tamir (ed.), Berlin: Springer-Verlag, 1985.
- 12 O. Mitomi et al. Appl. Optics, 31: 2030–2035, 1992.
- 13 T. Ido et al. IEEE, J. Light. Tech., 14: 2026–2034, 1996.
- 14 C. A. Brackett IEEE J. Selec. Area. Commun., 8: 948, 1990.
- 15 C. W. Pearce Epitaxy, A. C. Adams, Dielectric and Polysilicon Film Deposition, J. C. C. Tsai, Diffusion, T. E. Seidel, Ion Implantation, D. A. McGillis, Lithography, C. J. Mogab, Dry Etching, and W. Fichtner, Metallization. In VLSI Technology, S. M. Sze (ed.), New York: McGraw-Hill, 1983.
- 16 H. Kogenlnik Theory of dielectric waveguides. In Integrated Optics, T. Tamir (ed.), Berlin: Springer-Verlag, 1979.
- 17 B. E. A. Saleh M. C. Teich Photonics, NewYork: Wiley, 1991, pp. 238–271.
- 18 R. Marz Integrated Optics, Boston: Artech House, 1995, pp. 77–217.
- 19 T. Tamir et al. Guided-Wave Optoelectronics, Berlin: Springer-Verlag, 1988, pp. 96–144.
- 20 H. Kressel J. K. Butler Semiconductor Lasers and Heterojunction LEDs, New York: Academic Press, 1977.
- 21
G. P. Agrawal
N. K. Dutta
Long Wavelength Semiconductor Lasers,
New York:
Van Nostrand Reinhold,
1986.
10.1007/978-94-011-6994-3 Google Scholar
- 22 T. Saitoh T. Mukai Traveling-Wave Semiconductor Laser Amplifiers, Coherence, Amplification, and Quantum Effects in Semiconductor Lasers, New York: Wiley, 1991.
- 23 R. J. Deri Monolithic integration of optical waveguide circuitry with III-V photodetectors for advanced lightwave receivers, IEEE J. Lightwave Technol., 11: 1296, 1993.
- 24 A. Alping Waveguide pin photodetectors: theoretical analysis and design criteria. IEE Proc., 136 (Pt. J): 177, 1989.
- 25 A. Yariv Optical Electronics, 3d Ed., New York: Holt, Rinehart and Winston, 1985.
- 26
F. Wooten
Optical Properties of Solids,
New York:
Academic Press,
1972.
10.1016/B978-0-12-763450-0.50014-3 Google Scholar
- 27 J. I. Pankove Optical Processes in Semiconductors, Englewood Cliffs, NJ: Prentice-Hall, 1971.
- 28 G. Bastard J. A. Brum IEEE J. Quantum Electron., 22: 1625, 1986.
- 29 D. A. B. Miller et al. Phys. Rev. Lett., 53: 2173–2175, 1984.
- 30 D. S. Chemla et al. IEEE J. Quantum Electron., 20: 265, 1984; and D. L. Smith and C. Mailhiot, Rev. Mod. Phys., 62: 173–234, 1990.
- 31 H. Shen et al. Appl. Phys. Lett., 72 (6): 683–685, 1998.
- 32 K. Ploog G. H. Dohler Adv. Phys., 32: 285, 1983.
- 33 M. Wegener et al. Appl. Phys. Lett., 55: 583–585, 1989; J. E. Zucker et al., Appl. Phys. Lett., 56: 1951, 1990.
- 34 W. Zhou H. Shen et al. Appl. Phys. Lett., 66: 607, 1995.
- 35 R. V. Schmidt L. L. Buhl Electron. Lett., 12: 575, 1976; R. C. Alferness, R. V. Schmidt, E. H. Turner, Appl. Opt., 18: 4012, 1979.
- 36 F. J. Leonberger C. O. Bozler Appl. Phys. Lett., 31: 223, 1977; K. Tada et al., Tech. Dig. 7th Topical Meeting Integrated Guided Wave Optics, Kissimee, FL, WB-4: 1984.
- 37 W. K. Burns et al. Appl. Opt., 14: 1053–1065, 1976.
- 38 J. F. Winchant et al. Electron. Lett., 28: 1135–1137, 1992.
- 39 A. Sneh et al. IEEE Photon. Technol. Lett., 9: 1589–1591, 1997.
- 40 C. Dragone C. A. Edwards R. C. Kistler IEEE Photon. Technol. Lett., 3: 896, 1991.
- 41 W. Lin et al. Tech. Dig. Conf. Laser Electro-Optics'96, 9: 344, 1996.
- 42 K. Nosu et al. IEEE J. Lightw. Technol., 11: 764, 1993.
- 43 H. Kobrinski K-W Cheung IEEE Commun. Mag., 53–63, Oct, 1989, reference cited in.
- 44 L. Brillouin Ann. Phys., 17: 80–122, 1892.
- 45 D. F. Nelson M. Lax Phys. Rev. Lett., 24: 378–380, 1970; Theory of photoelastic interaction, Phys. Rev., B3: 2778–2794, 1971.
- 46 R. W. Dixon IEEE J. Quantum Electron., QE-3: 85–93, 1967.
- 47 C. S. Tsai Guided wave acousto-optics. Electronics and Photonics, Berlin: Springer Series, Springer-Verlag, Vol. 23: 1990.
- 48 L. Kuhn P. F. Heidrich E. G. Lean Appl. Phys. Lett., 19: 428, 1971.
- 49 H. Sasaki N. Mikoshiba Proc. IEEE Ultrasonic Symp., 18: 1979.
- 50 Y. Ohmachi J. Noda IEEE J. Quantum Electron., QE-13: 43, 1977.
- 51 S. E. Harris R. W. Wallace J. Opt. Soc. Am., 59: 744–747, 1969.
- 52 N. Goto Y. Miyazaki Y. Akao Japan J. Appl. Phys., 21: 1611, 1982.
- 53 Y. Ohmachi J. Appl. Phys., 44: 3928, 1973.
- 54 S. K. Yao R. R. August D. B. Anderson J. Appl. Phys., 49: 5728, 1978.
- 55 C. S. Tsai IEEE Trans. Circuits Syst., 26: 1072, 1979.
- 56 C. S. Tsai D. Young IEEE Trans. Microw. Theory Tech., MTT-38: 560–573, 1990 and references cited therein.
- 57 J. P. Castera G. Hapner Appl. Opt., 16: 2031, 1971.
- 58 T. Mizumoto Y. Naito IEEE Trans. Microw. Theory Tech., MTT-30: 922, 1982.
- 59 P. K. Tein et al. Appl. Phys. Lett., 21: 394, 1975.
- 60 J. Warner IEEE Trans. Microw. Theory Tech., MTT-23: 70, 1975.
- 61 G. Hapner B. Besormire J. P. Castera Appl. Opt., 14: 1479, 1975.
- 62 A. Shibukawa M. Kobayashi Appl. Opt., 20: 2444, 1981.
- 63 A. Yariv IEEE J. Quantum Electron., QE-9: 919, 1973.
- 64 P. K. Tein Rev. Mod. Phys., 49: 361, 1977.
- 65 H. F. Taylor A. Yariv Proc. of IEEE, 62: 1044, 1974.
- 66 H. A. Haus Wave and Fields in Optoelectronics. Englewood Cliffs, NJ: Prentice-Hall, 1984.
- 67 A. Yariv P. Yeh Optical Waves in Crystals. New York: Wiley, 1984.
Wiley Encyclopedia of Electrical and Electronics Engineering
Browse other articles of this reference work: