English

A Hamiltonian formalism for general variational problems, with applications to first order gravity with basis

Mathematical Physics 2025-09-15 v2 Differential Geometry math.MP

Abstract

The present article introduces a generalization of the (multisymplectic) Hamiltonian field theory for a Lagrangian density, allowing the formulation of this kind of field theories for variational problem of more general nature than those associated to a classical variational problem. It is achieved by realizing that the usual construction of the Hamiltonian equations can be performed without the use of the so called Hamiltonian section, whose existence is problematic when general variational problems are considered. The developed formalism is applied to obtain a novel multisymplectic Hamiltonian field theory for a first order formulation of gravity with basis in the full frame bundle. Also, aspects of a constraint algorithm in this generalized setting are discussed.

Keywords

Cite

@article{arxiv.2407.03991,
  title  = {A Hamiltonian formalism for general variational problems, with applications to first order gravity with basis},
  author = {Guadalupe Quijón and Santiago Capriotti},
  journal= {arXiv preprint arXiv:2407.03991},
  year   = {2025}
}

Comments

38 pages. Some typos corrected. We have added a whole new section devoted to the application of the methods developed in the article to the construction of a novel Hamiltonian version of the equations for gravity with basis

R2 v1 2026-06-28T17:29:19.760Z