Mehta Dalip Singh, Dubey Satish Kumar, Hossain M Mosarraf, Shakher Chandra
Laser Applications and Holography Laboratory, Instrument Design Development Centre, Indian Institute of Technology Delhi, Hauz Khas, New Delhi 110016, India.
Appl Opt. 2005 Dec 10;44(35):7515-21. doi: 10.1364/ao.44.007515.
We propose a simple multifrequency spatial-carrier and phase-shifting fringe-projection system based on two-wavelength lateral shearing interferometry (LSI). In this system a wedge-shaped plate lateral shearing interferometer is used and, owing to the presence of tilt, a finite number of fringes parallel to the direction of the shear appears; hence a significant spatial-carrier frequency is generated at the focus position. We further enhance the spatial-carrier frequency either by changing the wavelength of the laser light or by slight defocusing. A synthetic interferogram with low spatial-carrier frequency is obtained by use of laser light of two wavelengths simultaneously in the lateral shear interferometer. We obtain the phase-shifted fringe patterns from the same setup by simply moving the wedge plate in an in-plane parallel direction, using a linear translator. The fringe projection system was tested for measurement of the three-dimensional shape of a discontinuous object. The present system has many advantages; e.g., it is a common-path interferometry and hence is insensitive to external vibrations, is compact in size, and is relatively inexpensive.
我们提出了一种基于双波长横向剪切干涉术(LSI)的简单多频空间载波和相移条纹投影系统。在该系统中,使用了楔形平板横向剪切干涉仪,由于存在倾斜,会出现有限数量的平行于剪切方向的条纹;因此,在焦点位置会产生显著的空间载波频率。我们通过改变激光波长或轻微离焦来进一步提高空间载波频率。通过在横向剪切干涉仪中同时使用两种波长的激光,可获得具有低空间载波频率的合成干涉图。通过使用线性平移台在平面内平行方向简单移动楔形平板,从同一设置中获得相移条纹图案。对该条纹投影系统进行了测试,以测量不连续物体的三维形状。本系统具有许多优点,例如,它是共光路干涉测量法,因此对外部振动不敏感,尺寸紧凑且成本相对较低。