3D tomographic phase retrieval under the Born approximation for discrete objects supported on a $n\times n\times n$ grid is analyzed. It is proved that $n$ projections are sufficient and necessary for unique determination by computed tomography (CT) with full projected field measurements and that $n+1$ coded projected diffraction patterns are sufficient for unique determination, up to a global phase factor, in tomographic phase retrieval. Hence $n+1$ is nearly, if not exactly, the minimum number of diffractions patterns needed for 3D tomographic phase retrieval under the Born approximation.
翻译:分析了以n\timen\timen\timen\timennn\timenntrimen 网格支持的离散物体在“原始近似”下进行的3D 色相检索,证明用计算成的断层摄影(CT)和完全预测的实地测量,有足够和必要的美元预测值,并证明在Xmphic 阶段检索中,以n+1美元为编码的预测偏差模式足以作出独特的确定,直至全球相距系数。因此,如果不是准确的话,则美元+1美元几乎是3D 色相检索所需的最起码的偏差模式。