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Research PaperResearchia:202609.19012

Global Minima of the Thomson Problem in a Disk: A Molecular Dynamics Approach with Fixed Border Charges

Georgiy K. Lavrov

Abstract

We report improved global-minimum configurations for the classical Thomson problem of $N=60$, $61$, $92$, and $99$ repulsive Coulomb charges confined to a disk. By combining the quenched molecular dynamics (QMD) method with the fixed-border heuristic introduced by Amore and Zarate, we systematically obtain configurations with energies $E_{\mathrm{QMD}}(60)=2159.3584240930$, $E_{\mathrm{QMD}}(61)=2237.19264190$, $E_{\mathrm{QMD}}(92)=5358.35353314$, and $E_{\mathrm{QMD}}(99)=6254.83029083$, which...

Submitted: September 19, 2026Subjects: Mathematics; Mathematics

Description / Details

We report improved global-minimum configurations for the classical Thomson problem of N=60N=60, 6161, 9292, and 9999 repulsive Coulomb charges confined to a disk. By combining the quenched molecular dynamics (QMD) method with the fixed-border heuristic introduced by Amore and Zarate, we systematically obtain configurations with energies EQMD(60)=2159.3584240930E_{\mathrm{QMD}}(60)=2159.3584240930, EQMD(61)=2237.19264190E_{\mathrm{QMD}}(61)=2237.19264190, EQMD(92)=5358.35353314E_{\mathrm{QMD}}(92)=5358.35353314, and EQMD(99)=6254.83029083E_{\mathrm{QMD}}(99)=6254.83029083, which improve upon the previously best-known values. For N=60N=60, the Voronoi diagram of our configuration differs from the one reported earlier. The symmetries for N=61N=61 (C2)(C_{2}) and N=99N=99 (D1)(D_{1}) are confirmed and are consistent with the known symmetry patterns for these configurations. For N=92N=92, whereas the previously reported Voronoi diagram has lower symmetry, our solution exhibits a clear D1D_{1} (axial) symmetry of defects. The results are highly reproducible across multiple independent runs, providing strong evidence that these configurations are robust global-minimum candidates.


Source: arXiv:2609.20777v1 - http://arxiv.org/abs/2609.20777v1 PDF: https://arxiv.org/pdf/2609.20777v1 Original Link: http://arxiv.org/abs/2609.20777v1

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Date:
Sep 19, 2026
Topic:
Mathematics
Area:
Mathematics
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