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首页> 外文期刊>Applied optics >Depth-resolved measurement of phase gradients in a transient phase object field using pulsed digital holography
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Depth-resolved measurement of phase gradients in a transient phase object field using pulsed digital holography

机译:使用脉冲数字全息术在瞬态相位物场中深度解析测量相位梯度

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摘要

A technique to gain depth information from an image-plane digital holographic recording of a transient phase object positioned between a diffuser and an imaging system is demonstrated. The technique produces telecentric reconstructions of the complex amplitude throughout the phase volume using numerical lenses and the complex spectrum formulation of the diffraction integral. The in-plane speckle movements as well as the phase difference between the disturbed field and a reference field are calculated in a finite number of planes using a cross-correlation formulation. It is shown that depth information about in-plane phase gradients can be determined in two planes using reconstructed speckle fields from four different depths. In addition, the plane of optimum reconstruction for calculating the phase difference with maximum contrast is detected from the technique. The method is demonstrated on a measurement of a laser ablation process.
机译:示出了一种技术,该技术从位于扩散器和成像系统之间的瞬态相位对象的图像平面数字全息记录获取深度信息。该技术使用数字透镜和衍射积分的复杂频谱公式,可以对整个相体积的复振幅进行远心重构。使用互相关公式,可以在有限数量的平面中计算出平面内的斑点运动以及受干扰场和参考场之间的相位差。示出了可以使用来自四个不同深度的重建的散斑场来在两个平面中确定关于平面内相位梯度的深度信息。另外,从该技术中检测用于计算具有最大对比度的相位差的最佳重构平面。在激光烧蚀过程的测量中证明了该方法。

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