arXiv · 2609.30366
Hybrid Partial Dressing: Correct Effective Potentials at All Temperatures
Abstract
We develop Hybrid Partial Dressing (HPD), a simple diagrammatic resummation scheme for finite-temperature effective potentials in scalar field theory which is valid at all temperatures. HPD improves on earlier resummation schemes such as Daisy Resummation and Partial Dressing by being two-loop exact at all temperatures and free of the overlapping momentum problem. Renormalization group improvement is straightforward to implement. We illustrate the scheme in multi-scalar theories with a spontaneously broken $\mathbb{Z}_2$ symmetry, and compare it against existing approaches, showing in particular that it reproduces the two-loop Dimensional Reduction (DR) potential exactly in the high-temperature regime where DR applies, while remaining valid at all temperatures. This makes HPD suitable for the general study of strong first order phase transitions beyond the Standard Model, as we demonstrate through gravitational wave predictions from HPD and its RG-improved version, RGHPD.
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Raphaël Berthiaume, David Curtin, Michael Luke, Andrija Rasovic, Jyotirmoy Roy. 2026-09-24. Hybrid Partial Dressing: Correct Effective Potentials at All Temperatures. https://arxiv.org/abs/2609.30366
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