On the eigenvalues of a central configuration

Fuente: arXiv
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Autores principales: Albouy, Alain, Sun, Jiexin
Formato: Preprint
Publicado: 2025
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author Albouy, Alain
Sun, Jiexin
author_facet Albouy, Alain
Sun, Jiexin
contents The equations of the Newtonian $n$-body problem have a matrix form, where an $n\times n$ matrix depending on the masses and on the mutual distances appears as a factor. The $n$ eigenvalues of this matrix are real and nonnegative. In a motion of relative equilibrium, the configuration, called {\it central}, has constant mutual distances. The matrix is constant. We prove that in a relative equilibrium of 5 bodies the two nontrivial eigenvalues are strictly greater than the three trivial ones. This result improves published inequalities about the central configurations, which belong to two independent lines of research. One starts with Williams in 1938 and concerns constraints on the shape of the configuration. The other concerns the Hessian of the potential and its index, and applies to the linear stability of the self-similar motions and to the possible bifurcations. We also considerably clarify the very useful identities with which Williams discusses his inequalities.
format Preprint
id arxiv_https___arxiv_org_abs_2512_00661
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle On the eigenvalues of a central configuration
Albouy, Alain
Sun, Jiexin
Mathematical Physics
70F10
The equations of the Newtonian $n$-body problem have a matrix form, where an $n\times n$ matrix depending on the masses and on the mutual distances appears as a factor. The $n$ eigenvalues of this matrix are real and nonnegative. In a motion of relative equilibrium, the configuration, called {\it central}, has constant mutual distances. The matrix is constant. We prove that in a relative equilibrium of 5 bodies the two nontrivial eigenvalues are strictly greater than the three trivial ones. This result improves published inequalities about the central configurations, which belong to two independent lines of research. One starts with Williams in 1938 and concerns constraints on the shape of the configuration. The other concerns the Hessian of the potential and its index, and applies to the linear stability of the self-similar motions and to the possible bifurcations. We also considerably clarify the very useful identities with which Williams discusses his inequalities.
title On the eigenvalues of a central configuration
topic Mathematical Physics
70F10
url https://arxiv.org/abs/2512.00661