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首页|Distinguishing Coupled Dark Matter Dark Energy from Kinematic Phantom Crossing

Distinguishing Coupled Dark Matter Dark Energy from Kinematic Phantom Crossing

Samit Ganguly Koushik Dutta Goutam Manna

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Distinguishing Coupled Dark Matter Dark Energy from Kinematic Phantom Crossing

Samit Ganguly Koushik Dutta Goutam Manna

作者信息

Abstract

Recent measurements of cosmic expansion have renewed interest in dark-energy scenarios in which the effective equation of state exhibits phantom-like evolution and may cross $w=-1$. Such behavior, however, does not require a fundamental phantom field: in coupled dark-energy-dark-matter~(CDEDM) models, energy exchange between a canonical scalar field and cold dark matter, happens Lagrangian labels, can reproduce the same effective equation of state evolution as that of phenomenological $w_0w_a$CDM model. We show that this microscopic interaction leaves distinctive, testable signatures in structure growth by forming a two-fluid system in which only cold dark matter feels the scalar-mediated fifth force (and an associated drag term), while baryons remain uncoupled. When combined with neutrino-free streaming, this setup generates a characteristic coupling, neutrino-mass degeneracy, whose leading scaling $\sum m_ν\propto f_c^2 α^2$ follows analytically from the two-fluid growth equations. Using DESI DR2 BAO, CMB distance information, ACT DR6 lensing, redshift-space distortions, and three supernova compilations, we find that this scaling is recovered for both exponential and inverse-power-law potentials. We further show that the dominant contribution to the growth response arises from the coupling-induced modification of the background evolution, with the fifth force enhancing growth and the drag partially counteracting it. Finally, the interaction induces a running dark-matter mass, changing it at recombination by $4.3\%$--$5.5\%$, so CMB distance calculations must account for the evolving dark-matter density. These correlated growth and recombination effects provide a route to distinguish interaction-driven phantom crossing from purely kinematic dark-energy parametrizations.

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Samit Ganguly,Koushik Dutta,Goutam Manna.Distinguishing Coupled Dark Matter Dark Energy from Kinematic Phantom Crossing[EB/OL].(2026-09-17)[2026-09-23].https://arxiv.org/abs/2609.19602.

学科分类

天文学
首发时间 2026-09-17
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