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Cosmological Stasis from Dynamical Scalars: Tracking Solutions and the Possibility of a Stasis-Induced Inflation

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arxiv 2406.06830 v2 pith:NDIDXICM submitted 2024-06-10 astro-ph.CO hep-phhep-th

Cosmological Stasis from Dynamical Scalars: Tracking Solutions and the Possibility of a Stasis-Induced Inflation

classification astro-ph.CO hep-phhep-th
keywords stasiscosmologicalenergybackgroundmightscalarsstateabundances
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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It has recently been realized that many theories of physics beyond the Standard Model give rise to cosmological histories exhibiting extended epochs of cosmological stasis. During such epochs, the abundances of different energy components such as matter, radiation, and vacuum energy each remain fixed despite cosmological expansion. In previous analyses of the stasis phenomenon, these different energy components were modeled as fluids with fixed, unchanging equations of state. In this paper, by contrast, we consider more realistic systems involving dynamical scalars which pass through underdamping transitions as the universe expands. Indeed, such systems might be highly relevant for BSM scenarios involving higher-dimensional bulk moduli and inflatons. Remarkably, we find that stasis emerges even in such situations, despite the appearance of time-varying equations of state. Moreover, this stasis includes several new features which might have important phenomenological implications and applications. For example, in the presence of an additional "background" energy component, we find that the scalars evolve into a "tracking" stasis in which the stasis equation of state automatically tracks that of the background. This phenomenon exists even if the background has only a small initial abundance. We also discuss the intriguing possibility that our results might form the basis of a new "Stasis Inflation" scenario in which no ad-hoc inflaton potential is needed and in which there is no graceful-exit problem. Within such a scenario, the number of e-folds of cosmological expansion produced is directly related to the hierarchies between physical BSM mass scales. Moreover, non-zero matter and radiation abundances can be sustained throughout the inflationary epoch.

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Cited by 4 Pith papers

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

  1. Detecting Cosmological Stasis with Future Gravitational Wave Observatories

    hep-ph 2026-07 conditional novelty 6.0

    Future detectors, BBO in particular, could detect the gravitational-wave imprint of a cosmological stasis epoch across much of its parameter space; known particle-physics transitions would add fixed calibration steps.

  2. Axiverse Lampposts

    hep-ph 2026-02 conditional novelty 6.0

    In a hierarchical multi-axion theory with random couplings, axion field ranges shrink with 1/sqrt(N), generic axion–SM couplings are suppressed, but the QCD axion's coupling is unsuppressed.

  3. The Pull of Stasis: A Study of the Dynamics of the Thermal Stasis Attractor

    astro-ph.CO 2026-07 conditional novelty 5.0

    An explicit three-scalar model realizes a thermal stasis attractor with a finite lifetime, whose fast and slow trajectories make the duration of stasis strongly initial-condition dependent.

  4. Gravitational Wave Signatures of Cosmological Stasis: A Unified Spectral Template

    hep-ph 2026-07 conditional novelty 5.0

    Any constant-w stasis epoch imprints a closed-form IGWB template whose tilt α and amplitude step C² must lie on a single falsifiable consistency curve C²(α), resolvable by BBO/DECIGO.