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Dark Matter Isocurvature from Curvature

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arxiv 2311.17164 v2 pith:UMXWMJQL submitted 2023-11-28 astro-ph.CO hep-phhep-th

Dark Matter Isocurvature from Curvature

classification astro-ph.CO hep-phhep-th
keywords curvaturemodelsdarkfluctuationsisocurvaturematteramplitudecase
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Isocurvature fluctuations, where the relative number density of particle species spatially varies, can be generated from initially adiabatic, or curvature, fluctuations if the various species fall out of or were never in thermal equilibrium. The freezing of the thermal relic dark matter abundance is one such case, but for modes that are still outside the horizon the amplitude is highly suppressed and originates from the small change in the local expansion rate due to the local space curvature produced by the curvature fluctuation. We establish a simple separate-universe method for calculating this generation that applies to both freeze-in and freeze-out models, identify three critical epochs for this process, and give general scaling behaviors for the amplitude in each case: the freezing epoch, the kinetic decoupling epoch and matter-radiation equality. Freeze-out models are typically dominated by spatially modulated annihilation from the latter epochs and can generate much larger isocurvature fluctuations compared with typical freeze-in models, albeit still very small and observationally allowed by cosmic microwave background measurements. We illustrate these results with concrete models where the dark matter interactions are vector or scalar mediated.

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  1. CMB Test of the Higgs Origin of Dark-Photon Dark Matter

    hep-ph 2026-06 unverdicted novelty 7.0

    CMB isocurvature distinguishes Higgsed dark-photon DM production histories via a model-independent response formalism, requiring q_eff >=2 and initial displacements >3.5e4 H_* for perturbative full-abundance cases.