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1)  Digital shearing interference
数字剪切干涉
2)  digital speckle-shearing interferometry
数字散斑剪切干涉
1.
Because the speckle fringe patterns are observed readily on a TV monitor in traditional digital speckle-shearing interferometry before it is further developed.
本文运用传播光矢量对数字散斑剪切干涉的条纹形成作了理论解释 ,使其物理意义更加清晰。
3)  digital shearing speckle interferometry
数字剪切散斑干涉计量
4)  Shearing interferometer
剪切干涉
1.
The inspection technology of the displacement of shear on the lateral shearing interferometer based on Radon transform;
基于Radon变换的横向剪切干涉图的自动检测技术
2.
The common lateral shearing interferometer composed of a parallel plate was improved in structure,and frequency synthesis theory in(Fourier) optics was applied to the inspection of collimated light beam by means of lateral shearing interferometer.
对普通平行平板剪切干涉在结构上进行了改进,将傅立叶光学空间频率合成原理应用于横向剪切干涉对光束的准直性进行检测。
5)  shearing interference
剪切干涉
1.
The mathematical principle of quantitative process and the technique in sampling process about lateral shearing interference.;
剪切干涉仪的定量处理数学原理及采样处理技巧
2.
Design of long guide alignment measurement system based on laser shearing interference
基于激光剪切干涉的长导轨直线度测量系统设计
3.
The choice of proper initial angle of incidence makes a lateral shearing interference easy to realize between the two beams reflected from the front and back surfaces of a plane-parallel plate.
通过选择合适的初始入射角,使从平板前后表面反射的两光束实现剪切干涉。
6)  shear interference
剪切干涉
1.
Considering the defect of conventional shear interference, it is tested by means of the mathematics and numerical simulation that the shear interference with prolongation wavefront can overcome those drawbacks.
从数值方法的角度分析了常规剪切干涉存在的缺陷,通过数学原理和数值分析方法提出波前延拓剪切干涉,并证明了它的可行性及其对常规剪切干涉缺陷的克服。
补充资料:剪切干涉仪
      把通过被测件的波面用适当的光学系统分裂成两个,并使两波面彼此相互错开(剪切),在两波面重叠部分产生干涉图形的仪器。
  
  以常见的横向剪切干涉仪为例。如图所示,激光束被聚光镜1会聚到空间滤波器2上,滤波器置于被测物镜3的焦点上,从物镜出射的波面通过一稍有楔角的平板 4前后表面的反射,形成两个彼此横向错开的波面,在两波面重叠处形成干涉图形,通过判读条纹可评价被测物镜的传递函数。
  
  除横向剪切干涉仪外,如使两波面沿径向剪切即两波面尺寸不同形成干涉的称径向剪切干涉仪;如使两波面绕中心小量旋转而相互错开形成干涉的称旋转剪切干涉仪;如使两波面反向错开形成干涉的称反向剪切干涉仪。
  
  剪切干涉仪的优点是可省去标准的参考光学表面,结构简单稳定。其弱点是剪切后形成的干涉图形判读比较困难。剪切干涉仪主要用作测定光学零件的面型、光学系统的像差和光学传递函数、流场的均匀性等。对激光束的波面测量而言,剪切干涉仪是唯一可用的干涉形式。
  

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