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arxiv: 1102.1594 · v2 · pith:7FGVW4RQnew · submitted 2011-02-08 · ✦ hep-th · gr-qc

Comments on Galileons

classification ✦ hep-th gr-qc
keywords equationsorderequationfieldfirstgalileonspointedsecond
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The recent progress in the study of Galileons, i.e. equations of second order with an action invariant under a Galilean transformation is related to work on `Universal Field Equations' \cite{dbfgov} which are second order equations arising by an iterative procedure from arbitrary Lagrangians of weight one in their first derivatives. It is pointed out that the Galileon is simply a Kaluza-Klein reduction of a Universal Field Equation. An implicit solution to the equation of motion is presented, and a class of explicit solutions pointed out. The multi-field extensions of both types of equations are derived from a first order formalism, which is simply the substantive derivative of fluid dynamics.

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