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Improved wavefront reconstruction using difference Zernike polynomials for two double-shearing wavefronts

机译:使用差异Zernike多项式进行两种双剪裁波前的波前重建改进的波前重建

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To realize wavefront reconstruction for two double-shearing wavefronts produced by our studied cross phase grating lateral shearing interferometer(CPGLSI) in x and y directions, improved wavefront reconstruction using difference Zernike polynomials is studied in this paper. Firstly, the x directional double-shearing wavefronts in the x direction produced by shearing of (+1, +1), (-1, +1) orders diffraction beams and that of (+1,-1), (-1,-1) orders diffraction beams are represented respectively by the corresponding difference Zernike polynomials. Then the whole difference wavefront in x direction is represented by the half value of the sum of the above x directional double-shearing wavefronts. Similarly, the double-shearing wavefronts in the y direction produced by shearing of (+1, +1), (+1, -1) orders and that of (-1, +1), (-1,-1) orders are represented respectively by the corresponding difference Zernike polynomials. Then the whole difference wavefront in y direction is also represented by the half value of the sum of the y directional double-shearing wavefronts. Secondly, the least square fitting is used to obtain the whole wavefront. Investigations on reconstruction accuracy and reliability are carried out by numerical experiments, in which influences of different shearing amounts and noises on reconstruction accuracy are evaluated. The simulation results show that the wavefront reconstruction accuracy can all reach to high accuracy corresponding to different shearing amounts and also validate that our wavefront reconstruction technique is robust to noise.
机译:为了实现由我们研究的交叉相位光栅横向剪切干涉仪(CPGLSI)在X和Y方向上产生的两种双剪切波前的波前重建,本文研究了使用差异Zernike多项式的改进的波前重建。首先,通过剪切(+1,+1),(-1,+1)衍射光束和(+ 1,-1)的剪切产生的x方向上的x方向上的x方向上的x方向上的波前沿(-1, -1)订单分别由相应的差异Zernike多项式表示衍射光束。然后,X方向上的整个差异波前由上述X方向双剪裁波前的总和的半值表示。类似地,通过剪切(+1,+1),(+1,-1)序列和(-1,+1),(-1,-1)订单的剪切产生的y方向上的双剪切波前由相应的差异Zernike多项式分别表示。然后,Y方向上的整个差异波前也由Y方向双剪裁波前和的半值表示。其次,最小二乘配件用于获得整个波前。通过数值实验进行重建准确度和可靠性的研究,评估了不同剪切量和噪声对重建精度的影响。仿真结果表明,波前重建精度可以达到与不同剪切量相对应的高精度,并且还验证了我们的波前重建技术对噪声鲁棒。

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