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March 12, 2026Journal of High Energy Physics0 citationsOpen Access

Bounding field excursions along null geodesics with applications to cosmology

AHAidan HerderscheeUniversity of California, Santa BarbaraAWAron C. WallUniversity of Cambridge

Key Points

  • The aim is to derive a quantitative bound on scalar field excursions along null geodesics and its implications for cosmology.
  • Derived a field excursion bound using the Raychaudhuri equation.
  • Assumed all other fields satisfy the null energy condition.
  • Explored implications in various spacetimes, including those with timelike naked singularities.
  • Found that large scalar variations are bounded by the number of e-folds.
  • Generalized the bound to semi-classical spacetimes violating the null energy condition.
  • Highlighted anthropic implications of these bounds for accessing favorable vacua.

Abstract

A bstract Scalar fields in theories of gravity often inhabit a moduli space of vacua, and coherent spatial or temporal variations in their expectation values can produce measurable gravitational effects. Such variations are expected in contexts ranging from inflationary cosmology to the near-horizon regions of near-extremal black holes, where they can deflect light rays and shift horizons. This work derives a quantitative field excursion bound (FEB) on scalar variations along null geodesics, expressed in terms of the expansion parameter. The bound follows from the Raychaudhuri equation, assuming that all other fields satisfy the null energy condition (NEC). It is saturated in certain spacetimes containing a timelike naked singularity. A possible generalization to semiclassical spacetimes that violate the NEC, but satisfy a strengthened version of the quantum focusing condition (QFC), is proposed. In cosmology, the FEB constrains the extent of large field excursions to be linearly bounded by the number of e-folds, independent of the inflationary model. This has notable implications for anthropic scenarios, where large excursions are often invoked to access favorable vacua.

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Cite This Study

Herderschee et al. (2026) studied this question.

synapsesocial.com/papers/69b257cd96eeacc4fcec6bdfhttps://doi.org/10.1007/jhep03(2026)025
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