Kinetic Isocurvature Perturbation

Fuente: arXiv
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Main Authors: Bae, Kyu Jung, Cheong, Dhong Yeon, Gong, Jinn-Ouk, Harigaya, Keisuke, Shin, Chang Sub
Format: Preprint
Published: 2026
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author Bae, Kyu Jung
Cheong, Dhong Yeon
Gong, Jinn-Ouk
Harigaya, Keisuke
Shin, Chang Sub
author_facet Bae, Kyu Jung
Cheong, Dhong Yeon
Gong, Jinn-Ouk
Harigaya, Keisuke
Shin, Chang Sub
contents We formulate a new class of primordial perturbations called $\textit{kinetic isocurvature perturbations}$, where the mass density of dark matter is constant relative to the photon number density while the kinetic energy of dark matter fluctuates in space. Such perturbations naturally arise in scenarios where a nonrelativistic heavy field decays into relativistic dark matter particles with a spatially modulated rate. As dark matter cools and becomes nonrelativistic, these fluctuations in kinetic energy leave large-scale density perturbations essentially unaffected and therefore evade the Cosmic Microwave Background bounds on isocurvature perturbations, yet survive as spatial variations in the free-streaming scale, resulting in patch-by-patch variation of the matter power spectrum.
format Preprint
id arxiv_https___arxiv_org_abs_2603_22394
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Kinetic Isocurvature Perturbation
Bae, Kyu Jung
Cheong, Dhong Yeon
Gong, Jinn-Ouk
Harigaya, Keisuke
Shin, Chang Sub
High Energy Physics - Phenomenology
Cosmology and Nongalactic Astrophysics
We formulate a new class of primordial perturbations called $\textit{kinetic isocurvature perturbations}$, where the mass density of dark matter is constant relative to the photon number density while the kinetic energy of dark matter fluctuates in space. Such perturbations naturally arise in scenarios where a nonrelativistic heavy field decays into relativistic dark matter particles with a spatially modulated rate. As dark matter cools and becomes nonrelativistic, these fluctuations in kinetic energy leave large-scale density perturbations essentially unaffected and therefore evade the Cosmic Microwave Background bounds on isocurvature perturbations, yet survive as spatial variations in the free-streaming scale, resulting in patch-by-patch variation of the matter power spectrum.
title Kinetic Isocurvature Perturbation
topic High Energy Physics - Phenomenology
Cosmology and Nongalactic Astrophysics
url https://arxiv.org/abs/2603.22394