Page 187 - An Introduction to Microelectromechanical Systems Engineering
P. 187

166                                   MEM Structures and Systems in Photonic Applications

                  [6] Saleh, B. E. A., and M. C. Teich, Fundamentals of Photonics, New York: Wiley, 1991,
                     pp. 461–466, 494–503.
                  [7] Siegman, A. E., Lasers, Mill Valley, CA: University Science Books, 1986, pp. 1–80.
                  [8] Coldren, L. A., and S. W. Corzine, Diode Lasers and Photonic Integrated Circuits, New
                     York: Wiley, 1995, pp. 1–9, 111–116.
                  [9] Saleh, B. E. A., and M. C. Teich, Fundamentals of Photonics, New York: Wiley, 1991,
                     pp. 310–317.
                 [10] Jerman, H., and J. D. Grade, “A Mechanically-Balanced, DRIE Rotary Actuator for a
                     High-Power Tunable Laser,” Tech. Digest Solid-State Sensor and Actuator Workshop, Hil-
                     ton Head Island, SC, June 2–6, 2002.
                 [11] Pezeshki, B., et al., “20 mW Widely Tunable Laser Module Using DFB Array and MEMs
                     Selection,” IEEE Photonics Technology Letters, Vol. 14, October 2002, pp. 1457–1459.
                 [12] Littman, M. G., and H. J. Metcalf, “Spectrally Narrow Pulsed Dye Laser Without Beam
                     Expander,” Applied Optics, Vol. 17, No. 14, 1978, pp. 2224–2227.
                 [13] Agrawal, G. P., and N. K. Dutta, Semiconductor Lasers, Boston, MA: Kluwer Academic
                     Publishers, 1993, pp. 269–275.
                 [14] Coldren, L. A., and S. W. Corzine, Diode Lasers and Photonic Integrated Circuits, New
                     York: Wiley, 1995, pp. 17–24, 393–398.
                 [15] Klein, M. V., Optics, New York: Wiley, 1970, pp. 342–346.
                 [16] Klein, M. V., Optics, New York: Wiley, 1970, pp. 338–341.
                 [17] Liu, K., and M. G. Littman, “Novel Geometry for Single-Mode Scanning of Tunable
                     Lasers,” Optics Letters, Vol. 6, No. 3, 1981, pp. 117–118.
                 [18] U.S. Patent 6,469,415, October 22, 2002.
                 [19] Smith, S. T., and D. G. Chetwynd, Foundations of Ultraprecision Mechanism Design
                     (Developments in Nanotechnology), London, UK: Taylor and Francis, 1992, p. 119.
                 [20] Tang, W. C., et al., “Electrostatic-Comb Drive of Lateral Polysilicon Resonators,” Sensors
                     and Actuators, Vol. A21, Nos. 1–3, February 1990, pp. 328–331.
                 [21] Berger, J. D., and D. Anthon, “Tunable MEMS Devices for Optical Networks,” Optics &
                     Photonics News, March 2003, pp. 43–49.
                 [22] Kogelnik, H., and C. V. Shank, “Coupled-Wave Theory of Distributed Feedback Lasers,”
                     Journal of Applied Physics, Vol. 43, 1972, pp. 2327–2335.
                 [23] Data sheet for CQF935/508 series, JDS Uniphase Corporation, 1768 Automation Parkway,
                     San Jose, CA 95131, http://www.jdsu.com.
                 [24] Ghafouri-Shiraz, H., Distributed Feedback Laser Diodes and Optical Tunable Filters, New
                     York: Wiley, 2003.
                 [25] Amann, M. -C., and J. Buus, Tunable Laser Diodes, Norwood, MA: Artech House, 1998,
                     pp. 40–51.
                 [26] Pezeshki, B., et al., “Twelve Element Multi-Wavelength DFB Arrays for Widely Tunable
                     Laser Modules,” Tech. Digest of the Optical Fiber Communication Conference, Anaheim,
                     CA, March 17–22, 2002, pp. 711–712.
                 [27] Saleh, B. E. A., and M. C. Teich, Fundamentals of Photonics, New York: Wiley, 1991,
                     pp. 316–317.
                 [28] Plomteux, O., “DFL-5720 Digital Frequency-Locking System: Simplifying Wavelength-
                     Locker Testing,” Application Note 083, EXFO Electro-Optical Engineering, Inc., Vanier,
                     Quebec, Canada, http://documents.exfo.com/appnotes/anote083-ang.pdf.
                 [29] Dames, M. P., et al., “Efficient Optical Elements to Generate Intensity Weighted Spot
                     Arrays: Design and Fabrication,” Applied Optics, Vol. 30, No. 19, July 1, 1991,
                     pp. 2685–2691.
                 [30] Farn, M. W., “Agile Beam Steering Using Phase-Array Like Binary Optics,” Applied Optics,
                     Vol. 33, No. 22, August 1, 1994, pp. 5151–5158.
   182   183   184   185   186   187   188   189   190   191   192