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On the Disformal Transformation of the Einstein-Hilbert Action

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arxiv 2010.00956 v3 pith:J3ROK7LW submitted 2020-10-01 gr-qc

On the Disformal Transformation of the Einstein-Hilbert Action

classification gr-qc
keywords transformationactiondisformaleinstein-hilbertdarkderivativesequationsmotion
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Disformal transformation is a generalisation of the well-known conformal transformation commonly elaborated in mainstream graduate texts in gravity (relativity) and modern cosmology. This transformation is one of the most important mathematical operations in scalar tensor theories attempting to address pressing problems involving dark energy and dark matter. With this topic yet to penetrate these texts, we present a pedagogically oriented derivation of the disformal transformation of the Einstein-Hilbert action. Along the way of calculation, we encounter apparently problematic terms that could be construed as leading to equations of motion that go beyond second order in derivatives, signalling instability. We demonstrate that these terms can be eliminated and absorbed through the definition of the Riemann curvature tensor. The transformed Einstein-Hilbert action turns out to be a special case of the Horndeski action and the equations of motion for the scalar field that it describes are all up to second order only in derivatives, implying stability.

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  1. A New Definition of Horndeski Theory and the Possibility of Multiple Scalar Field Extensions

    gr-qc 2025-11 conditional novelty 6.0

    Horndeski theory is re-characterized as the disformally-closed class anchored to a minimal seed action, reproducing the known single-field action and generating multi-field antisymmetric terms, with full multi-field v...