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Numerical compensation in phase-shifting in-line lensless Fourier digital holographic microscopy

机译:相移在线无透镜傅里叶数字全息显微镜中的数值补偿

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A numerical compensation technique is proposed to enhance the quality of reconstruction of phase-shifting lensless Fourier digital holographic microscopy. Introducing phase-shifting technique into the in-line lensless Fourier digital holographic microscopy is widely used, because this system possesses high resolution and is able to suppress the zero-order of diffraction and the twin image in reconstruction. Practically, it is likely to suffer from the lower resolution due to the blurred image in reconstruction plane in respect that the normal of object plane is not perpendicular to the CCD plane or the distance between the source of reference wave and the CCD plane is not equal to the distance between the object plane and the CCD plane accurately. Mechanical adjustment has difficulty in achieving high accuracy of adjustment and needs a great deal of time. Based on the theories of Fresnel diffraction and holography, it is found that numerical compensation can complete adjustment in high accuracy. It uses chirp function as compensation factor. The values of the three compensating parameters in three directions are obtained by repeatedly applying the numerical reconstruction procedure through gradual approach until the best in-focus image is obtained. The precisions of the three compensating parameters are decided by requirement. The main advantages are: (1)the accuracy of adjustment is high, (2)the quality of reconstruction can be greatly improved. In order to testify the feasibility of the numerical compensation technique, experiment is carried out. Its results show that fine numerical compensation is necessary to advance the quality and resolution of reconstruction.
机译:提出了一种数字补偿技术来提高相移无透镜傅立叶数字全息显微术的重建质量。由于该系统具有高分辨率,并且能够抑制衍射的零级和重构中的孪生像,因此在无透镜在线傅里叶数字全息显微镜中引入了相移技术。实际上,由于物平面的法线不垂直于CCD平面或参考波源与CCD平面之间的距离不相等,在重建平面中由于模糊的图像,很可能遭受较低的分辨率精确地对准物平面和CCD平面之间的距离。机械调节难以实现高精度的调节,并且需要大量时间。根据菲涅耳衍射和全息术的理论,发现数值补偿可以完成高精度的调整。它使用线性调频函数作为补偿因子。通过逐步应用数值重构程序直到获得最佳对焦图像,才能获得三个方向上三个补偿参数的值。三个补偿参数的精度由要求决定。主要优点是:(1)调整精度高,(2)重建质量可以大大提高。为了验证数值补偿技术的可行性,进行了实验。结果表明,精细的数值补偿是提高重建质量和分辨率的必要条件。

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