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Gauge-Transformation Properties of Cosmological Observables and its Application to the Light-Cone Average

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abstract

Theoretical descriptions of observable quantities in cosmological perturbation theory should be independent of coordinate systems. This statement is often referred to as gauge-invariance of observable quantities, and the sanity of their theoretical description is verified by checking its gauge-invariance. We argue that cosmological observables are invariant scalars under diffeomorphisms and as a consequence their theoretical description is gauge-invariant, only at linear order in perturbations. Beyond linear order, they are usually not gauge-invariant, and we provide the general law for the gauge-transformation that the perturbation part of an observable does obey. We apply this finding to derive the second-order expression for the observational light-cone average in cosmology and demonstrate that our expression is indeed invariant under diffeomorphisms.

fields

astro-ph.CO 1

years

2019 1

verdicts

ACCEPT 1

representative citing papers

Tetrad formalism for exact cosmological observables

astro-ph.CO · 2019-08-28 · accept · novelty 7.0

The paper derives exact, coordinate-independent equations for cosmological observables on a new 'observer space-time' manifold, using tetrads to track the observer frame.

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  • Tetrad formalism for exact cosmological observables astro-ph.CO · 2019-08-28 · accept · none · ref 54 · internal anchor

    The paper derives exact, coordinate-independent equations for cosmological observables on a new 'observer space-time' manifold, using tetrads to track the observer frame.