The goal of the paper is to develop a method that will combine the use of variational techniques with regularization methods in order to study existence and multiplicity results for the periodic and the Dirichlet problem associated to the perturbed Kepler system [ ddot x = -rac{x}{|x|^3} + p(t), quad x in mathbb{R}^d, ] where $dgeq 1$, and $p:mathbb{R} omathbb{R}^d$ is smooth and $T$-periodic, $T>0$. The existence of critical points for the action functional associated to the problem is proved via a non-local change of variables inspired by Levi-Civita and Kustaanheimo-Stiefel techniques. As an application we will prove that the perturbed Kepler problem has infinitely many generalized $T$-periodic solutions for $d=2$ and $d=3$, without any symmetry assumptions on $p$.

Regularized variational principles for the perturbed Kepler problem

Vivina Laura Barutello
Co-first
;
2021-01-01

Abstract

The goal of the paper is to develop a method that will combine the use of variational techniques with regularization methods in order to study existence and multiplicity results for the periodic and the Dirichlet problem associated to the perturbed Kepler system [ ddot x = -rac{x}{|x|^3} + p(t), quad x in mathbb{R}^d, ] where $dgeq 1$, and $p:mathbb{R} omathbb{R}^d$ is smooth and $T$-periodic, $T>0$. The existence of critical points for the action functional associated to the problem is proved via a non-local change of variables inspired by Levi-Civita and Kustaanheimo-Stiefel techniques. As an application we will prove that the perturbed Kepler problem has infinitely many generalized $T$-periodic solutions for $d=2$ and $d=3$, without any symmetry assumptions on $p$.
2021
383
1
64
http://arxiv.org/abs/2003.09383v1
Mathematics - Classical Analysis and ODEs; Mathematics - Classical Analysis and ODEs; Mathematics - Analysis of PDEs; Mathematics - Dynamical Systems
Vivina Laura Barutello; Rafael Ortega; Gianmaria Verzini
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2318/1797092
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