English

Hamilton-Jacobi theory in multisymplectic classical field theories

Mathematical Physics 2021-01-29 v1 math.MP

Abstract

The geometric framework for the Hamilton-Jacobi theory developed in previous works is extended for multisymplectic first-order classical field theories. The Hamilton-Jacobi problem is stated for the Lagrangian and the Hamiltonian formalisms of these theories as a particular case of a more general problem, and the classical Hamilton-Jacobi equation for field theories is recovered from this geometrical setting. Particular and complete solutions to these problems are defined and characterized in several equivalent ways in both formalisms, and the equivalence between them is proved. The use of distributions in jet bundles that represent the solutions to the field equations is the fundamental tool in this formulation. Some examples are analyzed and, in particular, the Hamilton-Jacobi equation for non-autonomous mechanical systems is obtained as a special case of our results.

Keywords

Cite

@article{arxiv.1504.02020,
  title  = {Hamilton-Jacobi theory in multisymplectic classical field theories},
  author = {Manuel de León and Pedro Daniel Prieto-Martínez and Narciso Román-Roy and Silvia Vilariño},
  journal= {arXiv preprint arXiv:1504.02020},
  year   = {2021}
}

Comments

44 pp