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This section contains the figure sources, bibliography, index, and author biography.

Figure Sources

p. 2Chart derived from Google Ngram Viewer: LIDAR versus lidar versus LiDAR versus LADAR (1950–2008, English).
p. 10 top http://en.wikipedia.org/wiki/Laser_safety. Public domain.
p. 10 bottom http://en.wikipedia.org/wiki/Laser_safety. Figure created by Han-Kwang Nienhuys and released under license CC-BY-2.5.
p. 11 http://en.wikipedia.org/wiki/Laser_safety. Figure created by Dahn and released under licence CC-BY-2.5.
p. 18Figure created by R. Pogge from ATRAN model data of Lord, S.D. (1992, NASA Technical Memor. 103957) from the Gemini Observatory website (hjttp://www.gemini.edu).
p. 19 top© Mike Willis December 26th, 2006.
p. 19 bottom© The Worlds of David Darling.
p. 27Courtesy of Agilent Technologies.
p. 30 http://en.wikipedia.org/wiki/Pink_noise. Figure created by Marrakkk and released under license CC BY-SA 3.0.
p. 40Courtesy of Matthew Dierking, Air Force Research Lab.
p. 47P. McManamon, “Review of ladar: A historic, yet emerging, sensor technology with rich phenomenology,” Opt. Eng. 51(6), 060901 (2012) [doi: 10.1117/1.OE.51.6.060901].
p. 52National Research Council, Laser Radar: Progress and Opportunities in Active Electro-Optical Sensing, The National Academies Press, Washington, D.C., p. 63 (2014).
p. 53National Research Council Laser Radar: Progress and Opportunities in Active Electro-optical Sensing, The National Academies Press, Washington, D.C., p. 88 (2014).
p. 54R. C. Hardie, M. Vaidyanathan, and P. F. McManamon, “Spectral band selection and classifier design for a multispectral imaging laser radar,” Opt. Eng. 37(3), 752–762 (1998) [doi: 10.1117/1.601907].

p. 58Adapted from J. C. Marron and R. L. Kendrick, “Distributed aperture active imaging,” Proc. SPIE 6550, 65500A (2007) [doi: 10.1117/12.724769].
p. 68Courtesy of Jeff Hecht.
p. 73 top http://en.wikipedia.org/wiki/Mode-locking. Released under license CC BY-SA 3.0-MIGRATED.
p. 79:R. V. Chimenti, M. P. Dierking, P. E. Powers, and J. W. Hausa, “Multiple chirp sparse frequency LFM ladar signals,” Proc. SPIE 7323, 73230N (2009) [doi: 10.1117/12.817865].
p. 87Courtesy of Intevac, Inc. http://www.intevac.com/intevacphotonics/ebaps-technology-overview/. Figure reprinted with permission.
p. 93Courtesy of How Stuff Works: http://science.howstuffworks.com/gimbal1.htm.
p. 96Courtesy of Nikon Small World: http://www.microscopyu.com/articles/confocal/resonantscanning.html.
p. 97P. F. McManamon, P. J. Bos, M. J. Escuti, J. Heikenfeld, et al., “A review of phased array steering for narrow-band electro-optical systems,” Proc. IEEE 97(6), 1078–1096 (2009).
p. 100P. F. McManamon, P. J. Bos, M. J. Escuti, J. Heikenfeld, et al., “A review of phased array steering for narrow-band electro-optical systems,” Proc. IEEE 97(6), 1078–1096 (2009).
p. 104P. F. McManamon, P. J. Bos, M. J. Escuti, J. Heikenfeld, et al., “A review of phased array steering for narrow-band electro-optical systems,” Proc. IEEE 97(6), 1078–1096 (2009).
p. 105 topS. R. Davis, G. Farca, S. D. Rommel, S. Johnson, and M. H. Anderson, “Liquid crystal waveguides: New devices enabled by >1000 waves of optical phase control,” Proc. SPIE 7618, 76180E (2010) [doi: 10.1117/12.851788].
p. 105 bottomS. R. Davis, G. Farca, S. D. Rommel, S. Johnson, and M. H. Anderson, “Liquid crystal waveguides: New devices enabled by >1000 waves of optical phase control,” Proc. SPIE 7618, 76180E (2010) [doi: 10.1117/12.851788].

p. 107P. F. McManamon, P. J. Bos, M. J. Escuti, J.Heikenfeld, et al., “A review of phased array steering for narrow-band electro-optical systems,” Proc. IEEE 97(6), 1078–1096 (2009).
p. 108 topP. F. McManamon, P. J. Bos, M. J. Escuti, J.Heikenfeld, et al., “A review of phased array steering for narrow-band electro-optical systems,” Proc. IEEE 97(6), 1078–1096 (2009).
p. 108 bottomP. F. McManamon, P. J. Bos, M. J. Escuti, J.Heikenfeld, et al., “A review of phased array steering for narrow-band electro-optical systems,” Proc. IEEE 97(6), 1078–1096 (2009).
p. 109P. F. McManamon, P. J. Bos, M. J. Escuti, J.Heikenfeld, et al., “A review of phased array steering for narrow-band electro-optical systems,” Proc. IEEE 97(6), 1078–1096 (2009).
p. 110E. A. Watson, “Analysis of beam steering with decentered microlens arrays,” Opt. Eng. 32(11), 2665–2670 [doi: 10.1117/12.148100].
p. 113Courtesy of Raytheon.
p.115 http://en.wikipedia.org/wiki/Inertial_ measurement_unit. Released under license CC BY-SA 3.0.
p. 118 http://en.wikipedia.org/wiki/Aliasing. Released under license CC BY-SA 3.0.
p. 122P. McManamon, “Review of ladar: A historic, yet emerging, sensor technology with rich phenomenology,” Opt. Eng. 51(6), 060901 (2012) [doi: 10.1117/1.OE.51.6.060901].
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KEYWORDS
LIDAR

Semiconductor lasers

Fiber lasers

Laser applications

Quantum cascade lasers

Laser range finders

Laser resonators

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