[1] WU H Y, ZHANG Ch M, ZHAO B Ch. Theoretial analysis on extending the field-of-view of the imaging spectrometer based on combined Wollaston prisms[J].Acta Physica Sinica, 2009, 58(2):930-934(in Chinese).
[2] WU H Y, ZHANG Ch M, ZHAO B Ch. Calculation and analysis of the optical path difference of modified wollaston prism[J]. Acta Physica Sinica, 2009, 58(3):1642-1647(in Chinese).
[3] MU T K, ZHANG Ch M, ZHAO B Ch. Calculation of the optical path difference and fringe location in polarization interference imaging spectrometer[J].Acta Physica Sinica, 2009, 58(6):3877-3885(in Chinese).
[4] MU T K, ZHANG Ch M, REN W Y, et al. Design and analysis of a Polarization interference imaging spectrometer with expanded field of view[J].Acta Physica Sinica, 2011, 60(7):070704(in Chin-ese).
[5] LIN X L, ZHOU F, WANG H Y, et al. Spatially modulated interference imaging spectrometer based on Wollaston prisms[J].Infrared and Laser Engineering, 2012, 41(7):1798-1802(in Chin-ese).
[6] DENG H Y, WU F Q, TANG H J. The spectral properties of the splitting angle for wollaston prism[J].Laser Journal, 2005, 26(4):42-43(in Chinese).
[7] MENG X M, SONG L K, ZHU X F, et al. Design of structural and field angles of α-BBO crystal polarizing prisms[J].Laser Technology, 2011, 35(3):326-329(in Chinese).
[8] ZHANG H, ZHANG H Y. Research progress of synthesis for inorganic crystal optical material barium metaborate[J].Shanghai Chemical Industry, 2012, 37(4):12-15(in Chinese).
[9] CHEN J, RUAN Y Zh.Growth of large birefringent α-BBO crystal[J]. Journal of Changchun University of Science and Technology, 2005, 28(2):93-95(in Chinese).
[10] TONG L, GAO Zh. Research of a new spectrometer based on wollaston prism array[J].Optical Technique, 2008, 34(s1):131-133(in Chinese).