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Leading Log Solution for Inflationary Yukawa

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arxiv gr-qc/0602110 v2 pith:TFVRZXXX submitted 2006-02-27 gr-qc astro-phhep-ph

classification gr-qcastro-phhep-ph
keywords fermionscalaractivebecauseeffectivefieldfieldsinfrared
verification ladder T0 review T1 audit T2 compute T3 formal
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We generalize Starobinskii's stochastic technique to the theory of a massless, minimally coupled scalar interacting with a massless fermion in a locally de Sitter geometry. The scalar is an ``active'' field that can engender infrared logarithms. The fermion is a ``passive'' field that cannot cause infrared logarithms but which can carry them, and which can also induce new interactions between the active fields. The procedure for dealing with passive fields is to integrate them out, then stochastically simplify the resulting effective action following Starobinski\u{\i}. Because Yukawa theory is quadratic in the fermion this can be done explicitly using the classic solution of Candelas and Raine. We check the resulting stochastic formulation against an explicit two loop computation. We also derive a nonperturbative, leading log result for the stress tensor. Because the scalar effective potential induced by fermions is unbounded below, back-reaction from this model might dynamically cancel an arbitrarily large cosmological constant.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Leading Logarithm Quantum Gravity II

    gr-qc 2025-07 conditional novelty 6.0 of 10

    The paper derives the leading-logarithm equations of motion for pure quantum gravity in accelerating spacetimes, whose solutions are claimed to re-sum all perturbative leading logarithms to all orders.

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