Yan Xiao-yan, Qin Jian-min, Wu Jin-hui, Qiao Ji-ping
Institute of Measuring and Controlling Technology, Taiyuan University of Technology, Taiyuan 030024, China.
Guang Pu Xue Yu Guang Pu Fen Xi. 2011 Jul;31(7):1873-7.
To improve spectrum resolution of the traditional Fourier interferometer with the same size lens, was proposed based on orthogonal wedge Fourier interferometer system. The interferometer system gets the optical path difference by the prism of two mutually perpendicular, which can make the laser Interferences on the CCD Array. The detector use the area array CCD linear array CCD, and the system collected the interference fringes on the two-dimensional plane. On the basis of the spectrum distribution of orthogonal inclination Moire interferometer by calculating optical path difference function, the system made the splicing of interference fringes on the area array CCD and Moire transform, finally got the spectrum resolution. The results from the MATLAB simulation software shows that the Maximum optical path difference of the orthogonal inclination Moire interferometer can be generated up to 234 microm, which is higher than the traditional Fourier interferometer about one order of magnitude, so the spectrum resolution also increased by nearly 10 times theoretical. Experimental calibration of the spectrometer with a selection of LAB SPAKR 750A-type spectrometer, measurements for the center wavelength of 635 nm semiconductor laser, the results show basically the same center wavelength position. However, the spectrum detected by orthogonal inclination Moire interferometer system near the center wavelength is better than the traditional interferometer system.
为了在使用相同尺寸透镜的情况下提高传统傅里叶干涉仪的光谱分辨率,基于正交楔形傅里叶干涉仪系统提出了该方法。该干涉仪系统通过两个相互垂直的棱镜获得光程差,这可以使激光在电荷耦合器件(CCD)阵列上产生干涉。探测器采用面阵CCD或线阵CCD,系统在二维平面上采集干涉条纹。基于正交倾斜莫尔干涉仪的光谱分布,通过计算光程差函数,系统对面阵CCD上的干涉条纹进行拼接和莫尔变换,最终得到光谱分辨率。MATLAB仿真软件的结果表明,正交倾斜莫尔干涉仪的最大光程差可达234微米,比传统傅里叶干涉仪高约一个数量级,因此光谱分辨率理论上也提高了近10倍。选用LAB SPAKR 750A 型光谱仪对该光谱仪进行实验校准,测量635nm半导体激光器的中心波长,结果表明中心波长位置基本相同。然而,正交倾斜莫尔干涉仪系统在中心波长附近检测到的光谱比传统干涉仪系统更好。