Covariant higher order perturbations of branes in curved spacetime
Riccardo Capovilla, Giovany Cruz, Edgar Yair L\'opez

TL;DR
This paper develops a covariant variational framework for analyzing higher order perturbations of branes in curved spacetime, emphasizing geometric structures and symmetries over traditional gauge-fixed methods.
Contribution
It introduces a covariant variational approach to higher order brane perturbations, deriving Jacobi equations and extending to third order in curved backgrounds.
Findings
Derivation of Jacobi equations for branes
Extension to third order perturbations in curved spacetime
Emphasis on geometric and symmetry aspects
Abstract
The treatment of higher order perturbations of branes is considered using a covariant variational approach. This covariant variational approach brings to the forefront the geometric structure of the underlying perturbation theory, as opposed to a more commonly used `direct approach', that ignores the variational origin. In addition, it offers a clear calculational advantage with respect to so called `gauge fixed' treatments that distinguish tangential and normal modes, as it emphasizes the symmetries of the geometric models that describe the brane dynamics. We restrict our attention to a brane action that depends at most on first derivatives of the embedding functions of the worldvolume spanned by the brane in its evolution. We consider first and second variations of the action that describes the brane dynamics. The first variation produces the equations of motion, as is well known. In…
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