[1] BURGE J H, MARTIN H M. Optical issues for giant telescopes with extremely fast primary mirrors[J]. SPIE, 2003,4840: 226-237.
[2] CHANG J, LIU L P, WANG Y T, et al.. Dual-band infrared optical system with large field-of-view and aperture[J]. J. Infrared Millim. Waves, 2006, 25(3): 170-172.(in Chinese)
[3] GE J. The optical design of rapid infrared-visible multi-object spectrometer: a NGST demonstration instrument[J]. SPIE, 2003,4850:535-543.
[6] MARTIN H M, BURGE J H, CUERDEN B, et al.. Manufacture of 8.4 m off-axis segments: a 1/5 scale demonstration[J]. SPIE, 2004,5494:62-70.
[7] ZHANG B ZH, ZHANG ZH Y, ZHANG X J. Fabrication and testing of brazed SiC space large aperture mirror[J]. Infrared and Laser Engineering, 2011, 40(1): 74-78. (in Chinese)
[9] SHU CH L. Modern Optics Manufacturing Technology[M]. Beijing: National Defense Industry Press, 2008: 112-121. (in Chinese)
[11] LI Y W, LI M, ZHANG J, et al.. Technology of laser tracker and its application in subway trains testing[J]. Machinery Design & Manufacture, 2007(7):98-100.
[12] BURGE J H, KOT L B, MARTIN H M, et al.. Alternate surface measurements for GMT primary mirror segments[J]. SPIE, 2006,6273: 62732T.
[13] CHEN ZH Y, WU J J, ZHAO Y J, et al.. The application of laser tracker system in feature measurement for airplane[J]. Machinery Design & Manufacture, 2009(12): 68-70. (in Chinese)
[14] GALE D M. Mechanical alignment of tertiary mirror and positioner on the LMT telescope[J]. SPIE, 2008,7018: 70183M.
[15] ZOBRIST T L, BURGE J H, DAVISON W B, et al.. Measurements of large optical surfaces with a laser tracker[J]. SPIE,2008,7018: 70183U.
[16] FARO CAM2 laser tracker user manual[Z]. 2006, 7. (in Chinese)