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On p-form theories with gauge invariant second order field equations

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abstract

We explore field theories of a single p-form with equations of motions of order strictly equal to two and gauge invariance. We give a general method for the classification of such theories which are extensions to the p-forms of the Galileon models for scalars. Our classification scheme allows to compute an upper bound on the number of different such theories depending on p and on the space-time dimension. We are also able to build a non trivial Galileon like theory for a 3-form with gauge invariance and an action which is polynomial into the derivatives of the form. This theory has gauge invariant field equations but an action which is not, like a Chern-Simons theory. Hence the recently discovered no-go theorem stating that there are no non trivial gauge invariant vector Galileons (which we are also able here to confirm with our method) does not extend to other odd p cases.

fields

gr-qc 1

years

2019 1

verdicts

UNVERDICTED 1

representative citing papers

Noncanonical Approaches To Inflation

gr-qc · 2019-06-21 · unverdicted · novelty 3.0

A review thesis covering Mukhanov parametrization, general scalar-tensor theories, and new slow-roll techniques for canonical and noncanonical inflation observables.

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  • Noncanonical Approaches To Inflation gr-qc · 2019-06-21 · unverdicted · none · ref 184 · internal anchor

    A review thesis covering Mukhanov parametrization, general scalar-tensor theories, and new slow-roll techniques for canonical and noncanonical inflation observables.