[1] HEI M, LU Y F, ZHANG ZH Y, et al.. Dynamic model-based design of fast steering mirror system[J]. Opt. Precision Eng., 2013, 21(1):21-29. (in Chinese)
[3] CHU C, TSAO T, ZHOU J, et al.. Double Risley prism pairs for optical beam steering and alignment. US:2004/0057656A1[P]. 2004-3-25
[4] DUNCAN B D, BOS P J, SERGAN V. Wide-angle achromatic prism beam steering for infrared countermeasure applications[J]. Optical Engineering. 2003, 42(4): 1038-1047.
[5] SWEATT W C. Optical switch using Risley prisms, US: 6549700B1[P]. 2003-4-15
[6] LACOURSIERE J, DOUCET M, CURATU E O, et al.. Large-deviation achromatic Risley prisms pointing systems [J]. SPIE, 2002, 4773: 123-131.
[7] GARCIA-TORALES G, STROJNIK M, PAEZ G. Risley prisms to control wave-front tilt and displacement in a vectorial shearing interferometer [J]. Appl. Opt., 2002, 41(7): 1380-1384.
[8] WEBER D C, TROLINGER J D, NICHOLS R G, et al.. Diffractively corrected Risley prism for infrared imaging [J]. SPIE, 2000, 4025: 79-86.
[9] YANG Y. Analytic solution of free space optical beam steering using Risley prisms[J]. Lightwave Technol., 2008, 26(21): 3576-3583.
[10] BOISSET G C, ROBERTSON B, HINTON H S. Design and construction of an active alignment demonstrator for a free-space optical interconnect[J]. Photonics Technology Letters., 1995, 7(6): 676-679.
[11] DEGNAN J J. Ray matrix approach for the real time control of SLR2000 optical elements [C]. the 14th International Workshop on Laser Ranging. San Fernando, Spain, 2004.
[12] LI Y. Third-order theory of the Risley-prism-based beam steering system[J]. Appl. Opt., 2011, 50(5): 679-686.
[13] LI Y. Closed form analytical inverse solutions for Risley-prism-based beam steering systems in different configurations[J]. Appl. Opt., 2011, 50(22): 4302-4309.
[15] HORNG J, LI Y. Error sources and their impact on the performance of dual-wedge beam steering systems[J]. Appl. Opt., 2012, 51(18): 4168-4175.