Increasing resolution and instability for linear inverse scattering problems

IF 1.6 2区 数学 Q1 MATHEMATICS Journal of Functional Analysis Pub Date : 2025-07-01 Epub Date: 2025-03-05 DOI:10.1016/j.jfa.2025.110923
Pu-Zhao Kow , Mikko Salo , Sen Zou
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Abstract

In this work we study the increasing resolution of linear inverse scattering problems at a large fixed frequency. We consider the problem of recovering the density of a Herglotz wave function, and the linearized inverse scattering problem for a potential. It is shown that the number of features that can be stably recovered (stable region) becomes larger as the frequency increases, whereas one has strong instability for the rest of the features (unstable region). To show this rigorously, we prove that the singular values of the forward operator stay roughly constant in the stable region and decay exponentially in the unstable region. The arguments are based on structural properties of the problems and they involve the Courant min-max principle for singular values, quantitative Agmon-Hörmander estimates, and a Schwartz kernel computation based on the coarea formula.
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增加线性逆散射问题的分辨率和不稳定性
本文研究了大固定频率下线性逆散射问题的分辨率提高问题。我们考虑了恢复赫兹波函数密度的问题,以及势的线性化逆散射问题。结果表明,随着频率的增加,可以稳定恢复的特征数量(稳定区域)变得越来越多,而其余特征(不稳定区域)则具有很强的不稳定性。为了严格地证明这一点,我们证明了正演算子的奇异值在稳定区域大致保持恒定,而在不稳定区域呈指数衰减。这些论点是基于问题的结构性质,它们涉及奇异值的Courant最小-最大原理,定量Agmon-Hörmander估计和基于共面积公式的Schwartz核计算。
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来源期刊
CiteScore
3.20
自引率
5.90%
发文量
271
审稿时长
7.5 months
期刊介绍: The Journal of Functional Analysis presents original research papers in all scientific disciplines in which modern functional analysis plays a basic role. Articles by scientists in a variety of interdisciplinary areas are published. Research Areas Include: • Significant applications of functional analysis, including those to other areas of mathematics • New developments in functional analysis • Contributions to important problems in and challenges to functional analysis
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