Lagrangian-Hamiltonian formalism for time-dependent dissipative mechanical systems
Mathematical Physics
2022-05-31 v1 math.MP
Symplectic Geometry
Abstract
In this paper we present a unified Lagrangian--Hamiltonian geometric formalism to describe time-dependent contact mechanical systems, based on the one first introduced by K. Kamimura and later formalized by R. Skinner and R. Rusk. This formalism is especially interesting when dealing with systems described by singular Lagrangians, since the second-order condition is recovered from the constraint algorithm. In order to illustrate this formulation, some relevant examples are described in full detail: the Duffing equation, an ascending particle with time-dependent mass and quadratic drag, and a charged particle in a stationary electric field with a time-dependent constraint.
Keywords
Cite
@article{arxiv.2205.14757,
title = {Lagrangian-Hamiltonian formalism for time-dependent dissipative mechanical systems},
author = {Xavier Rivas and Daniel Torres},
journal= {arXiv preprint arXiv:2205.14757},
year = {2022}
}
Comments
23 pp