无相位反向源散射问题:相位反演、唯一性和直接采样方法

Xia Ji , Xiaodong Liu , Bo Zhang
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引用次数: 42

摘要

类似于障碍物或介质散射问题,源散射问题的无相位远场模式的一个重要性质是平移不变性。因此,不可能重建潜在来源的位置。此外,如果源乘以任何模为1的复数,则无相位远场模式也是不变的。因此,即使考虑多频率无相位远场模式,也不能唯一地确定源。通过在模型中添加参考点源,我们提出了一种简单稳定的相位检索方法,并用无相位远场数据建立了几个唯一性结果。我们接着介绍了一种新的直接采样方法,通过直接使用宽带稀疏无相位数据来重建源的形状和位置。我们还提出了一种与新的相位检索算法和经典的相位数据直接采样方法相结合的方法。文中还给出了二维数值算例,验证了其可行性和有效性。
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Phaseless inverse source scattering problem: Phase retrieval, uniqueness and direct sampling methods

Similar to the obstacle or medium scattering problems, an important property of the phaseless far field patterns for source scattering problems is the translation invariance. Thus it is impossible to reconstruct the location of the underlying sources. Furthermore, the phaseless far field pattern is also invariant if the source is multiplied by any complex number with modulus one. Therefore, the source can not be uniquely determined, even the multi-frequency phaseless far field patterns are considered. By adding a reference point source into the model, we propose a simple and stable phase retrieval method and establish several uniqueness results with phaseless far field data. We proceed to introduce a novel direct sampling method for shape and location reconstruction of the source by using broadband sparse phaseless data directly. We also propose a combination method with the novel phase retrieval algorithm and the classical direct sampling methods with phased data. Numerical examples in two dimensions are also presented to demonstrate their feasibility and effectiveness.

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来源期刊
Journal of Computational Physics: X
Journal of Computational Physics: X Physics and Astronomy-Physics and Astronomy (miscellaneous)
CiteScore
6.10
自引率
0.00%
发文量
7
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