“Broadband Lightwave Sources and System”, Gayton Photonics Ltd., http://www.infowin.org/ACTS/RUS/PROJECTS/ac065.htm, printed Oct. 17, 2000 (4 pages). |
Dellunde, Jaume, “Laser diodes”, http://www.geocites.com/jdellund/receng.htm, printed Aug. 8, 2001 (4 pages). |
Hunter, D.K., et al., “Guided wave optical switch architectures. Part 1. Space switching”, International Journal of Optoelectronics, vol. 9, No. 6, 1994 (pp. 477-487). |
Solgaard, O., et al., “Optoelectronic Packaging Using Silicon Surface-Micromachined Alignment Mirrors”, IEEE Photonics Technology Letters, vol. 7, No. 1, 1995 (pp. 41-43) (4 pages total). |
Li, G.P., et al., “16-Wavelength Gain-Coupled DFB Laser Array with Fine Tunability”, IEEE Photonics Technology Letters, vol. 8, No. 1, Jan. 1996 (pp. 22-24). |
Gordon, C., “Hybrid Mode-Locked DBR-laser”, Multidisciplinary Optical Switching Technology Center, http://www,ece.ucsb.edu/MOST/33.html, (last updated Jan. 22, 1996), printed Aug. 5, 2001 (3 pages). |
Daneman, M. J., et al., “Laser-to-Fiber Coupling Module Using a Micromachined Alignment Mirror”, IEEE Photonics Technology Letters, vol. 8, No. 3, Mar. 1996 (pp. 396-398). |
Wu, M., “Micromachining for Optical and Optoelectronic Systems”, Proceedings of the IEEE, vol. 85, No. 11, Nov. 1997 (pp. 1833, 1943-1952). |
Jacques, S., “Phase conjugate mirror and diffraction grating yield stable, collimated, coherent, high-power diode laser.”, Oregon Medical Laser Center Newsletter, http://omlc.ogi.edu/news/dec97/pclaser.html, printed Apr. 9, 2001, (2 pages). |
Shirasaki, M., “Chromatic Dispersion Compensator Using Virtually Imaged Phased Array”, IEEE Photonics Technology Letters, vol. 9, No. 12, Dec. 1997 (pp. 1598-1600). |
Kudo, K., et al., “Multiwavelength microarray semiconductor lasers”, Electronics Letters, vol. 34, No. 21, Oct. 15, 1998, (pp. 2037-2039). |
Kopka, P., et al., “Bistable 2×2 and Multistable 1×4 Micromechnical Fibre-optic Switches on Silicon”, Micro Opto Electro Mechanical Systems, MOEMS 1999 (4 pages). |
Sahlén, O., “DWDM lasers fashion networks of the future”, FibreSystems, Sep. 1999 (pp. 41-44). |
“(BW)(Oh-Marconi-Comm-2) Marconi Communications Announces World-Beating Commercial Tuneable Laser at Telecom '99”, Press Release, http://www.businesswire.com/cgi-bin/ts_headline.sh?/bw.101199/192842212, Oct. 11, 1999, printed Oct. 17, 2000 (2 pages). |
Maluf, N., “Optical switches”, An Introduction to Microelectromechanical Systems Engineering, 2000, pp. 187-190 (3 pages). |
Nakano, H., “Technological Trends of Optical Communication Devices for DWDM”, NEC Device Technology International 2000, No. 59 (5 pages). |
Liu, F., et al., “Cost-effective wavelength selectable light source using DFB fibre laser array”, Electronics Letters, vol. 36, No. 7, Mar. 30, 2000, pp. 620-621, (3 pages). |
Hunwicks, A., “Advancing the Optical Component”, http://www.telecoms-mag.com/issues/200004/tci/advancing.html, Apr. 2000, printed Oct. 17, 2000 (6 pages). |
Pezeshki, B., et al., “12nm tunable WDM source using an integrated laser array”, Electronics Letters, vol. 36, No. 9, Apr. 27, 2000 (pp. 788-789). |
Howe, P., “Light fantastic”, digitalMASS at Boston.com, http://digitalmass.boston.com/news/daily/05/22/light_fantastic.html, printed Oct. 17, 2000 (5 pages). |
Silverman, S., “Vcs beam big bucks at optics upstarts”, Redherring,com, Oct. 9, 2000, http://www.redherring.com/vc/2000/1009/vc-optics100900.html?id=yahoo, printed Oct. 10, 2000 (5 pages). |
International Search Report mailed Jul. 31, 2002 in connection with International Application No. PCT/US02/10377, filed Apr. 1, 2002 (3 pages). |
Office Action for U.S. application No. 10/114,746, filed Apr. 1, 2002, inventor Edward C. Vail entitled “Modulator Alignment for Laser”, mailed Aug. 25, 2003 (12 pages). |