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Local optimization of weak distance between compact surfaces on special Euclidean group

Kazuki Koga

Abstract

We consider local optimization of a weak distance between two compact surfaces embedded in the three-dimensional Euclidean space on its special Euclidean group. Identifying those objects with the associated surface measures, their discrepancy is quantified in terms of the inhomogeneous Sobolev norm of negative order via the Plancherel theorem. Then, applying an isometry to one surface corresponds to pushforwarding its surface measure and the distance can be regarded as a function on the Lie grou...

Submitted: June 8, 2026Subjects: Mathematics; Mathematics

Description / Details

We consider local optimization of a weak distance between two compact surfaces embedded in the three-dimensional Euclidean space on its special Euclidean group. Identifying those objects with the associated surface measures, their discrepancy is quantified in terms of the inhomogeneous Sobolev norm of negative order via the Plancherel theorem. Then, applying an isometry to one surface corresponds to pushforwarding its surface measure and the distance can be regarded as a function on the Lie group. For appropriate exponents of the Sobolev norm, the second power of the function acquires sufficient differentiability that allows to search for its local minima in a derivative-based framework, and the gradient of the objective function has a favorable structure for efficient implementations using the nonuniform fast Fourier transform. In numerical experiments, we observe convergence of the SR1 trust-region method applied to a few root-finding problems and discuss its connection to a more geometric quantity.


Source: arXiv:2606.07440v1 - http://arxiv.org/abs/2606.07440v1 PDF: https://arxiv.org/pdf/2606.07440v1 Original Link: http://arxiv.org/abs/2606.07440v1

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Date:
Jun 8, 2026
Topic:
Mathematics
Area:
Mathematics
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