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首页> 外文期刊>Applied optics >Coherent diffractive imaging beyond the Fresnel approximation using a deterministic phase-retrieval method with an aperture-array filter
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Coherent diffractive imaging beyond the Fresnel approximation using a deterministic phase-retrieval method with an aperture-array filter

机译:使用确定性相位检索方法和孔径阵列滤光片的菲涅耳近似以外的相干衍射成像

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Previously, we have proposed a lensless coherent imaging using a nonholographic and noniterative phase-retrieval method that allows the reconstruction of a complex-valued object from a single diffraction intensity measured with an aperture-array filter. The proof-of-concept experiment of this method has been demonstrated under the Fresnel diffraction approximation. In applications to microscopy, however, the measurement of the diffraction intensity with high numerical aperture beyond the Fresnel approximation is required to obtain the object information at high spatial resolution. Thus we have also presented an extension procedure to apply the method to the cases beyond the Fresnel approximation by means of computer simulations. Here the effectiveness of the procedure is demonstrated by the experiments, in which the reconstruction with about 10 times the resolution of our previous experiment has been achieved and the object information in depth direction has been retrieved.
机译:以前,我们已经提出了一种使用非全息和非迭代相位检索方法的无透镜相干成像技术,该方法允许从使用孔径阵列滤光片测量的单个衍射强度重建复数值对象。该方法的概念验证实验已经在菲涅耳衍射近似下进行了证明。然而,在显微镜的应用中,需要以超过菲涅耳近似的高数值孔径来测量衍射强度,以获得高空间分辨率的物体信息。因此,我们还提出了一种扩展程序,可通过计算机模拟将方法应用于菲涅耳近似以外的情况。在这里,实验证明了该程序的有效性,其中重建的分辨率约为我们先前实验的10倍,并且在深度方向上检索了对象信息。

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