Generalized Helmholtz Conditions for Non-Conservative Lagrangian Systems
In this paper we provide generalized Helmholtz conditions, in terms of a semi-basic 1-form, which characterize when a given system of second order ordinary differential equations is equivalent to the Lagrange equations, for some given arbitrary non-conservative forces. For the particular cases of di...
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Veröffentlicht in: | Mathematical physics, analysis, and geometry analysis, and geometry, 2015-01, Vol.18 (1), Article 25 |
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Sprache: | eng |
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Zusammenfassung: | In this paper we provide generalized Helmholtz conditions, in terms of a semi-basic 1-form, which characterize when a given system of second order ordinary differential equations is equivalent to the Lagrange equations, for some given arbitrary non-conservative forces. For the particular cases of dissipative or gyroscopic forces, these conditions, when expressed in terms of a multiplier matrix, reduce to those obtained in Mestdag et al. (Differential Geom. Appl.
29
(1), 55–72,
2011
). When the involved geometric structures are homogeneous with respect to the fibre coordinates, we show how one can further simplify the generalized Helmholtz conditions. We provide examples where the proposed generalized Helmholtz conditions, expressed in terms of a semi-basic 1-form, can be integrated and the corresponding Lagrangian and Lagrange equations can be found. |
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ISSN: | 1385-0172 1572-9656 |
DOI: | 10.1007/s11040-015-9196-3 |