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Computing equilibrium measures with power law kernels

Abstract:
We introduce a method to numerically compute equilibrium measures for problems with attractive-repulsive power law kernels of the form $K(x-y) = \frac{|x-y|^\alpha}{\alpha}-\frac{|x-y|^\beta}{\beta}$ using recursively generated banded and approximately banded operators acting on expansions in ultraspherical polynomial bases. The proposed method reduces what is naively a difficult to approach optimization problem over a measure space to a straightforward optimization problem over one or two variables fixing the support of the equilibrium measure. The structure and rapid convergence properties of the obtained operators results in high computational efficiency in the individual optimization steps. We discuss stability and convergence of the method under a Tikhonov regularization and use an implementation to showcase comparisons with analytically known solutions as well as discrete particle simulations. Finally, we numerically explore open questions with respect to existence and uniqueness of equilibrium measures as well as gap forming behaviour in parameter ranges of interest for power law kernels, where the support of the equilibrium measure splits into two intervals.
Publication status:
Published
Peer review status:
Peer reviewed

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Publisher copy:
10.1090/mcom/3740

Authors


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Institution:
University of Oxford
Division:
MPLS
Department:
Mathematical Institute
Role:
Author


Publisher:
American Mathematical Society
Journal:
Mathematics of Computation More from this journal
Volume:
91
Issue:
337
Pages:
2247-2281
Publication date:
2022-06-14
Acceptance date:
2022-02-17
DOI:
EISSN:
1088-6842
ISSN:
0025-5718


Language:
English
Keywords:
Pubs id:
1145281
Local pid:
pubs:1145281
Deposit date:
2022-02-17

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