Phasing out Dark Matter Isocurvature with Thermal Misalignment

Fuente: arXiv
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Main Authors: Batell, Brian, Ghalsasi, Akshay, Ghosh, Subhajit, Rai, Mudit
Format: Preprint
Published: 2026
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author Batell, Brian
Ghalsasi, Akshay
Ghosh, Subhajit
Rai, Mudit
author_facet Batell, Brian
Ghalsasi, Akshay
Ghosh, Subhajit
Rai, Mudit
contents Thermal misalignment provides an alternative to the standard misalignment mechanism for the cosmological production of scalar dark matter. In this framework, feeble couplings to particles in the thermal bath generate a finite-temperature potential that drives the scalar towards large field values early in the radiation era, dynamically inducing the misalignment before the onset of scalar oscillations. As a result, the relic abundance is controlled primarily by particle masses and couplings rather than the initial field value. As a light spectator field, the scalar acquires inflationary fluctuations that are uncorrelated with the adiabatic curvature mode, generically sourcing isocurvature perturbations. We show that, unlike standard misalignment, where light scalars are strongly constrained by cosmic microwave background bounds on dark matter isocurvature for high-scale inflation, thermal misalignment can naturally suppress the isocurvature signal. This occurs through a novel late-time phase offset between the background zero mode and the superhorizon perturbations, which reduces the final dark matter density contrast. Thermal misalignment therefore provides a new and generic route to isocurvature-safe scalar dark matter.
format Preprint
id arxiv_https___arxiv_org_abs_2603_18132
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Phasing out Dark Matter Isocurvature with Thermal Misalignment
Batell, Brian
Ghalsasi, Akshay
Ghosh, Subhajit
Rai, Mudit
High Energy Physics - Phenomenology
Cosmology and Nongalactic Astrophysics
Thermal misalignment provides an alternative to the standard misalignment mechanism for the cosmological production of scalar dark matter. In this framework, feeble couplings to particles in the thermal bath generate a finite-temperature potential that drives the scalar towards large field values early in the radiation era, dynamically inducing the misalignment before the onset of scalar oscillations. As a result, the relic abundance is controlled primarily by particle masses and couplings rather than the initial field value. As a light spectator field, the scalar acquires inflationary fluctuations that are uncorrelated with the adiabatic curvature mode, generically sourcing isocurvature perturbations. We show that, unlike standard misalignment, where light scalars are strongly constrained by cosmic microwave background bounds on dark matter isocurvature for high-scale inflation, thermal misalignment can naturally suppress the isocurvature signal. This occurs through a novel late-time phase offset between the background zero mode and the superhorizon perturbations, which reduces the final dark matter density contrast. Thermal misalignment therefore provides a new and generic route to isocurvature-safe scalar dark matter.
title Phasing out Dark Matter Isocurvature with Thermal Misalignment
topic High Energy Physics - Phenomenology
Cosmology and Nongalactic Astrophysics
url https://arxiv.org/abs/2603.18132