仅从强度数据重建三维波场:变分逆成像技术

V. Katkovnik, Artem Migukin, J. Astola
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引用次数: 2

摘要

我们提出了一种变分方法,从两个或多个传感器平面在不同轴向位置上的强度测量中获得三维波场的模块和相位的重建。目标函数由数据保真度项和正则化器组成。保真度项对应于波场强度(幂)的高斯噪声观测所得的似然函数。波场重建是基于增广拉格朗日技术的二维目标波场约束非线性优化。主要目标是设计一种比传统算法(如著名的Gerchberg-Saxton算法及其多次修改)更高效、更准确的算法。作为进一步的发展,我们讨论了一种使用二维物体波场的相位和模块的变换域先验的变分方法。
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3D wave field reconstruction from intensity-only data: Variational inverse imaging techniques
We present a variational approach to obtain a reconstruction of module and phase of a 3D wave field from intensity-only measurements on two or more sensor planes at different axial positions. The objective functional consists of a data fidelity term and a regularizer. The fidelity term corresponds to the likelihood function derived for the Gaussian noisy observations of the wave field intensities (powers). The wave field reconstruction is framed as a constrained nonlinear optimization with respect to a 2D object wave field and is based on the augmented Lagrangian technique. The main goal is to design an algorithm which is more efficient and accurate than the conventional ones such as the well-known Gerchberg-Saxton algorithms and their multiple modifications. As a further development we discuss a variational approach using a transform domain prior on phase and module of the 2D object wave field.
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3D wave field reconstruction from intensity-only data: Variational inverse imaging techniques Regularized reconstruction of irregularly sampled scalar light fields About methods of estimating the correlation properties of circularly-polarized and linearly-polarized plane waves On feasibilities of the use of spatial polarization modulation for estimating coherence of optical fields Temporal double- and triple-intensity correlation imaging with classical light
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