References

Journal Articles                    Home

1.     C. Dragonne, “Efficient N ´ N star couplers using Fourier optics,” J. Lightwave Technol., 7 (No. 3), 479-489, 1989.

2.     B. H. Verbeek, C. H. Henry, N. A. Olsson, K. J. Orlowsky, R. F. Kazarinov, and B. H. Johnson, “Integrated four-channel Mach-Zehnder multi-demultiplexer fabricated with phosphorous doped SiO2 waveguides on Si,” J. Lightwave Technol., 6 (No. 6), 1011-1015, 1988.

3.     K. Oda, N. Takato, H. Toba and K. Nosu, “A wide-band guided-wave periodic multi/demultiplexer with a ring resonator for optical FDM transmission systems,” J. Lightwave Technol., 6 (No. 6), 1016-1023, 1988.

4.     W. A. Pasmooij, P. A. Mandersloot and M. K. Smit, “Prism-coupling of light in to narrow planar optical waveguides,” J. Lightwave Technol., 7 (No. 1), 175-180, 1989.

5.     M. K. Smit, “New focussing and dispersive planar component based on optical phase array,” Elec. Lett., 24, 385, 1988.

6.     M. Kawachi, “Silica waveguide on silicon and their application to integrated-optic components,” Opt. Quantum Electron., 22, 391–416, 1990.

7.     C. Dragonne, “An N ´ N optical multiplexer using a planar arrangement of two star couplers,” IEEE Photon. Technol. Lett., 3, 812–815, 1991.

8.     C. Dragonne, “Integrated optics N ´ N multiplexer on silicon,” IEEE Photonics Lett., 3, 896, 1991.

9.     A. P. vellekoop and M. K. Smit, “Four-channel integrated-optic wavelength demultiplexer with weak polarization dependence,” J. Lightwave Technol., 9 (No. 3), 310-314, 1991.

10.  R. Adar, C. H. Henry, C. Dragone, R. C. Kistler, and M. A. Milbrodt, “Broad-band array multiplexers made with silica waveguides on silicon,” J. Lightwave Technol., 11 (No. 2), 212–219, 1993.

11.  H. Takahashi, Y. Hibino, Y. Ohmori, and M. Kawachi, “Polarization-insensitive arrayed-waveguide wavelength multiplexer with birefringence compensating film,” IEEE Photon. Technol. Lett., 5 (No. 6), 707-709, 1993.

12.  Y. Inoue, Y. Ohmori, M. Kawachi, S. Ando, T. Sawada, and H. Takahashi, “Polarization mode converter with polyimide half waveplate in silica-based planar lightwave circuits,” IEEE Photon. Technol. Lett., 6 (No. 5), 626-628, 1994.

13.  H. Takahashi, K. Oda, H. Toba, and Y. Inoue, “Transmission characteristics of arrayed waveguide N´N wavelength multiplexer,” J. Lightwave Technol., 13 (No. 3), 447-455, 1995.

14.  P. C. Clemens, G. Heise, R. Marz, H. Michel, A. Reichelt, and W. Schneider, “Wavelength adaptable optical phased array in SiO2-Si,” IEEE Photon. Technol. Lett., 7 (No. 10), 1040-1041, 1995.

15.  L. Oddvar, and A. Subdo, “8-channel wavelength division multiplexer based on multimode interference couplers,” IEEE Photon. Technol. Lett., 7 (No. 9), 1034-1036, 1995.

16.  M. K. Smit and C. van Dam, “PHASAR based WDM devices: principles, design and application,” IEEE J. Sel. Topics Quant. Electron., 2 (No. 2), 236-250, 1996.

17.  C. Seo and J. C. Chen, “Low transmission losses in bent rib waveguides,” J. Lightwave Technol., 14 (No. 10), 2255-2259, 1996.

18.  X. J. M. Leijtens, P. Le Lourec, and M. K. Smit, “S-matrix oriented CAD-tool for simulating complex integrated optical circuits,” IEEE J. Sel. Topics Quant. Electron., 2 (No. 2), 257-262, 1996.

19.  R. Mestric, M. Renaud, M. Bachmann, B. Martin, and F. Gaborit, “Design and fabrication of 1.31-1.55-mm phased-array duplexer on InP,” IEEE J. Sel. Topics Quant. Electron., 2 (No. 2), 254-256, 1996.

20.  J. C. Chen, and C. dragone, “A study of fiber-to-fiber losses in waveguide grating routers,” J. Lightwave Technol., 15 (No. 10), 1895–1899, 1997.

21.  M. Saruwatari and K. Nawate, “Semiconductor laser to single mode fiber coupler,” Appl. Opt., 18, 1847, 1979.

22.  GR-1209-CORE

23.  M. Amersfoort, “Arrayed Waveguide Grating Design, Simulation and Layout,” Application notes, BBV Software, June 15, 1998.

24.  “Arrayed Waveguide Grating Temperature Controller,” Lucent technical note, November, 1999.

25.  H. Ehler, M. Biletzke, B. Kuhlow, G. Przyrembel and U. H. P. Fischer, Optical Fiber Technol., 6, 344, 2000.

26.  K. Okamoto, “Fundamentals of Optical Waveguides,” Academic Press, New York: 2000.

27.  A. Rahman, “Arrayed Waveguide Grating based DWDM,” Tyco internal report, April 4, 2001.

Table of  Contents

Other Journal Articles

S. Fukushima, E. Sano, Y. Yamane, K. Genda, and T. Matsumura "10-Gbit/s Serial Optical Interconnection for an ATM Switch," Fiber and Integrated Optics, 17:243-253, 1998.

D. Sadot and A. Mekkittikul, "Compact Optical WDM/ATM Switch with an Aggregate 4-Tbit/s Throughput," Fiber and Integrated Optics, 17:95-112, 1998.

J. J. La Clair "An Atmospherically Driven Optical Switch," Angew. Chem. Int. Ed. 1999, 38, No. 20, 3045-3047.

S. Nagaoka, "Design of a Latching Type Single-Mode Fiber Switch," Elect. & Commun. Japan, Part 2, Vol. 80, No. 6, 1997, pp 49-57.

J. Liu, Y.-L. Lam, Y.-C. Chan, Y. Zhou, W.-X. Que, B.-S. Ooi, "Fabrication of sol-gel-derived optical waveguide on InP for hybridized photonics applications," Appl. Phys. A Mat. Sci. & Proc. (1999).

M. E. Fermann, A. Galvanauskas, G. Sucha, and D. Harter, "Fiber-lasers for ultrafast optics," Appl. Phys. B 65, 259–275 (1997).

P. Ganguly, J. C. Biswas, S. K. Lahiri, "Matrix-Based Analytical Model of Critical Coupling Length of Titanium In-Diffused Integrated-Optic Directional Coupler on Lithium Niobate Substrate," Fiber an d Integrated Optics, 17:139-155, 1998.

M. Horino, K. Sato, T. Akashi, E. Furukawa, D. Kobayashi, "Micromechanical Optical Switch Using Planar Lightwave Circuits," Electronics and Communications in Japan, Part 2, Vol. 83, No. 5, 2000, pp 13-20. (Translated from Denshi Joho Tsushin Gakkai Ronbunshi, Vol. J82-C-I, No. 6, June 1999, pp. 335Œ341)

K. Peithmann, A. Wiebrock, and K. Buse, "Photorefractive properties of highly-doped lithium niobate crystals in the visible and near-infrared," Appl. Phys. B 68, 777–784 (1999).

D. Kip, "Photorefractive waveguides in oxide crystals: fabrication, properties, and applications," Appl. Phys. B 67, 131–150 (1998).

K.-J. Boller, B. Beier, and R. Wallenstein, "Properties and Frequency Conversion of High-Brightness Diode-Laser Systems," R. Diehl (Ed.): High-Power Diode Lasers, Topics Appl. Phys. 78 225 –263 (2000).

H.-J. Lee, M.-H. Lee, M.-C. Oh, S. G. Han, "Synthesis and properties of nonlinear optical polymers based on poly(ether imides) for electrooptical devices," Polymer Bulletin 42, 403–409 (1999).

W.-C. Chang, C.-Y. Sue, C.-H. Ko, M.-Y. Hsun, L.-Y. Chang, H.-Y. Liu, "Ni:LiNbO3 Mach-Zehnder modulators with a combinational-type waveguide structure," Microwave and Optical Technology Letters, Volume 20, Issue 6, 1999. Pages: 364-367.

W.-C. Chang, H.-C. Hou, "Switching characteristics of Ni:LiNbO3 directional couplers with two types of waveguide structures," Microwave and Optical Technology Letters, Volume 23, Issue 6, 1999. Pages: 331-335.

J. Shikata, K. Kawase, M. Sato, T. Taniuchi, H. Ito, "Characteristics of coherent terahertz wave generation from LiNbO3 optical parametric oscillator," Electronics and Communications in Japan (Part II: Electronics), Volume 82, Issue 5, 1999. Pages: 46-53.

S. M. Spearing, "Materials Issues in Microelectromechanical Systems (MEMS)," Acta. Ater., 48 (2000) 179-196.

P.  Schlup, I. T. McKinnie, and S. D. Butterworth, “Single-mode, singly resonant, pulsed periodically poled lithium niobate optical parametric oscillator,” Applied Optics, Vol. 38, No. 36, 1999, pp 7398–7401.

M. J. Missey, S. Russell, V. Dominic, R. G. Batchko, and K. L. Schepler, “Real-time visualization of domain formation in periodically poled lithium niobate,” Optics Express, 8 May 2000, Vol. 6, No. 10, 186–96.

S. Pereira and J.E. Sipe, “Nonlinear pulse propagation in birefringent fiber Bragg Gratings,” Optics Express, 23 November 1998, Vol. 3, No. 11, pp 418–432.

D. N. Maywar and G. P. Agrawal, “Low-power all-optical switching in active semiconductor chirped periodic structures,” Optics Express, 23 November 1998, Vol. 3, No. 11, pp 440–447.

A. Poustie, R. J. Manning, A. E. Kelly and K. J. Blow, “All-optical binary counter,” Optics Express, 31 January 2000, Vol. 6, No. 3, pp 69- 75.

J. J. O’ Reilly, P. M. Lane, J. Attard and R. Griffin, “Broadband wireless systems and networks: an enabling role for radio-over-fiber,” Phil. Trans. R. Soc. Lond. A (2000) 358, 2297–2308.

P. Polishuk, “DWDM System Components,” Fiber and In tegrated Optics, 18:149–153, 1999.

C.-T. LEE, H.-C. LEE, L.-G. SHEU, “Improvement of Non linear Modulation by Cascaded Mach-Zehnder Configuration,” Fiber and Integrated Optics, 17:119–130, 1998.

C. Gutierrez-Martinez and J. Rodriguez-Asomoza, “Automated system for measuring optical parameters for coherence-modulated optical links,” Rev. Sci. Instr. Vol. 71, No. 5 May 2000, 2248–2249.

W. Harper, S. Sun, L. R. Dalton, S. M. Garner, A. Chen, S. Kalluri, W. H. Steier, and B. H. Robinson, “Translating microscopic optical nonlinearity into macroscopic optical nonlinearity: the role of chromophore–chromophore electrostatic interactions,” J. Opt. Soc. Am. B, Vol. 15, No. 1, 1998, 329–337.

U. van Stevendaal, K. Buse, H. Malz, H. Veenhuis, and E. Kratzig, “Reduction of light-induced refractive-index changes by decreased modulation of light patterns in photorefractive crystals,” J. Opt. Soc. Am. B, Vol. 15, No. 12, December 1998, 2868–2877.

S. H. Lin, M. L. Hsieh, K. Y. Hsu, S.-P. Lin, T.-S. Yeh, L.-J. Hu, C.-H. Lin, and H. Chang, “Photorefractive Fe:LiNbO3 crystal thin plates for optical information processing,” J. Opt. Soc. Am. B, Vol. 16, No. 7, July 1999, 1112-1120.

P. Ney, A. Maillard, and M. D. Fontana, K. Polgar, “Accurate interferometric method for the measurement of electro-optic coefficients: application to a single b-barium borate crystal,” J. Opt. Soc. Am. B, Vol. 17, No. 7, July 2000, 1158-1165.

J. Rosen, Three-dimensional electro-optical correlation,” J. Opt. Soc. Am. B, Vol. 15, No. 2, 1998, 430-437.

O. Tikhomirov and J. Levy, “Confocal microscopy of electro-optic materials: effect of aberrations on the axial response in ac mode,” J. Opt. Soc. Am. B, Vol. 17, No. 7, July 2000, 1214-1221.

N. A. Riza and S. Sumriddetchkajorn, “Micromechanics-based wavelength-sensitive photonic beam control architectures and applications,” Applied Optics, Vol. 39, No. 6, 2000, 919–933.

G. J. Pendock and D. D. Sampson, “Noise in coherence-multiplexed optical fiber systems,” Applied Optics, Vol. 36, No. 36, 1997, 9536–9540.

B. M. King and M. A. Neifeld, “Parallel detection algorithm for page-oriented optical memories,” Applied Optics, Vol. 37, No. 26, 1998, 6275– 6298.

Books

D. Wood, "Optoelectronic Semiconductor Devices," Prentice Hall, New York: 1994.

B. H. Walker, "Optical Engineering Fundamentals," SPIE Optical Engineering Press, Washington: 1998.

J. Chrostowski and J. Terry, Eds., "Photonic Networks, Components and Applications," World Scientific, New Jersey: 1991.

S. Unger and J. C. C. Nelson, "Fiber Optics Theory and Applications," John Wiley & Sons," New York: 1990.

R. J. Hunsperger, "Photonic Devices and Systems," Marcel Dekker, New York: 1994.

J. Marcou, Ed., "Plastic Optical Fibers Practical Applications," John Wiley & Sons," New York: 1997.

C. Yeh, "Applied Photonics," Academic Press, New York: 1994.

R. T. Chen and P. S. Guilfoyle, Eds., "Optoelectronic Interconnects and Packaging," SPIE Optical Engineering Press, Washington: 1996.

S. V. Kartalopoulos, "Introduction to DWDM Technology: Data in a Rainbow," SPIE Optical Engineering Press, Washington: 2000.

N. Maluf, "An Introduction to Microelectromechanical Systems Engineering," Artech House, Boston: 2000.

P. K. Cheo, "Fiber Optics Devices and Systems," Prentice Hall, Englewood Cliffs: 1985; Second Ed., 1990

J. Hecht, " City of Light: The Story of Fiber Optics," Oxford Univ. Press, New York: 1999.

T. Sueta and T. Okoshi, Eds., "Ultrafast and Ultra-parallel Optoelectronics," John Wiley & Sons," New York: 1995.

C.-L. Chen, "Elements of Optoelectronics & Fiber Optics," IRWIN, Chicago: 1996.

M. A. Karim, "Electro-optical Devices and Systems," PWS-Kent, Boston: 1990.

J. Singh, "Semiconductor Optoelectronics Physics and Technology," McGraw-Hill, Bew York: 1995.

M. L. Riaziat, " Introduction to High-speed Electronics and Optoelectronics," John Wiley & Sons," New York: 1996.

E. D. Jones, A. Mascarenhas, and P. Petroff, Eds., "Optoelectronic Materials: Ordering, Compositions, Modulation, and Self-Assembled Structures," MRS Symposium Proceedings Volume 417, Pittsburgh: 1996.

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