首页> 外文会议>Conference on ICO20: Optical Information Processing; 20050821-26; Changchun(CN) >Phase-shifting digital holography using two low-coherence light sources with different wavelength
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Phase-shifting digital holography using two low-coherence light sources with different wavelength

机译:使用两个具有不同波长的低相干光源的相移数字全息术

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To observe an object shape in a light scattering medium, the low-coherence interferometry exercises its power to omit undesired light derived from multiple-light scattering. The phase-shifting digital holography is used to obtain the complex amplitude of the object from a few interference patterns. When the object has a height difference more than the wavelength of a light source, the obtained phase distribution has 2π ambiguity. Therefore, a phase-unwrapping technique is required to contour the object surface. When an object is in light-scattering media, the interference signal has much noise originating from multiple-light scattering, and therefore the phase unwrapping becomes harder. Two-wavelength interferometry set free from the unwrapping procedure. We propose a new method based on a combination of the phase-shifting digital holography, the two-wavelength interferometry, and the low-coherence interferometry. We demonstrate a topographic imaging of an object in light scattering media.
机译:为了观察光散射介质中的物体形状,低相干干涉测量法会行使其功能来忽略源自多重光散射的不希望有的光。相移数字全息术用于从一些干涉图样获得物体的复振幅。当物体的高度差大于光源的波长时,所获得的相位分布具有2π模糊度。因此,需要一种相位展开技术来勾画物体表面的轮廓。当物体处于光散射介质中时,干扰信号会产生大量源自多重光散射的噪声,因此相位解缠变得更加困难。无需进行解包程序即可设置两个波长的干涉仪。我们提出了一种基于相移数字全息技术,两波长干涉测量法和低相干干涉测量法相结合的新方法。我们展示了光散射介质中物体的地形成像。

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