A covariant, global, variational framework for perturbations in field theories is presented. Perturbations are obtained as vertical vector fields on the configuration bundle and they drag, exactly, solution into solutions. The flow of a perturbation drags solutions into solutions and the dragged perturbed solutions can be expanded in a series with respect to the flow parameter, hence it contains perturbations at any order. Mechanics is included as a special case. As a simple application, we recover the well-known discussion about stability of geodesics on a sphere $S_2$.

A variational framework for higher order perturbations

L. Fatibene;M. Ferraris;
2024-01-01

Abstract

A covariant, global, variational framework for perturbations in field theories is presented. Perturbations are obtained as vertical vector fields on the configuration bundle and they drag, exactly, solution into solutions. The flow of a perturbation drags solutions into solutions and the dragged perturbed solutions can be expanded in a series with respect to the flow parameter, hence it contains perturbations at any order. Mechanics is included as a special case. As a simple application, we recover the well-known discussion about stability of geodesics on a sphere $S_2$.
2024
21
5
1
18
http://arxiv.org/abs/2310.12907v1
Mathematical Physics; Mathematical Physics; General Relativity and Quantum Cosmology; Mathematics - Mathematical Physics
F. Chiaffredo; L. Fatibene; M. Ferraris; E. Ricossa; D. Usseglio
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2318/2067818
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