Cancellation of one-parameter graviton gauge dependence in the effective scalar field equation in de Sitter
Publication date
2026-04
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Abstract
We investigate gauge dependence of one-graviton-loop corrections to the effective field equation of the massless, minimally coupled scalar in de Sitter, obtained by including source and observer corrections to the effective self-mass correcting the equation. Using the ∆α variation of the de Sitter-breaking graviton propagator in a one-parameter family of gauges, we compute the gauge-dependent contributions to the effective self-mass of a massless minimally coupled scalar mediating interactions between heavy scalars. We show that gauge dependence cancels provided the contributions from all diagram classes are collected, including one-loop corrections to external mode functions, which play a qualitatively new role relative to flat space. The resulting cancellation supports the construction of graviton gauge-independent cosmological quantum-gravitational observables from quantum-corrected effective equations.
Keywords
de Sitter space, Models of Quantum Gravity, Non-Equilibrium Field Theory, Nuclear and High Energy Physics
Citation
Glavan, D, Miao, S P, Prokopec, T & Woodard, R P 2026, 'Cancellation of one-parameter graviton gauge dependence in the effective scalar field equation in de Sitter', Journal of High Energy Physics, vol. 2026, no. 4, 159. https://doi.org/10.1007/JHEP04(2026)159