The Infiltration-Reaction Cyclic Universe (IRCU): A Conceptual Cosmological Hypothesis on Primordial Infiltration, Spatial Asymmetry, the Emergent Dark Sector, and Iterative Cosmic Evolution

The standard Lambda-CDM framework successfully accounts for a wide range of cosmological observations, from large-scale structure formation to primordial nucleosynthesis. Concurrently, foundational questions regarding the physical nature of the earliest universe, metric singularities, and the microscopic origins of the dark sector (95% of the cosmic energy budget) remain active areas of inquiry. This paper articulates The Infiltration-Reaction Cyclic Universe (IRCU), an exploratory, first-principles conceptual hypothesis grounded in strict causality (ex nihilo nihil fit: nothing emerges from nothing). We hypothesize that cosmic dynamics unfold within an invariant, eternal, and non-expanding three-dimensional Euclidean space. The primordial pre-state is conceptualized as comprising two fundamental components: an unexcited, spatial scalar substrate designated as Latent Matter (M_latent), and discrete fields of Primordial Energy (E_free) possessing an intrinsic self-attraction and structural ordering tendency. Over extended durations, dispersed energy pockets aggregated into a directional flux (E_unified). Rather than an isotropic expansion from a centralized point, the genesis interaction is framed as a non-centric infiltration of this energy into the unstructured latent matter. Owing to spatial non-uniformity and propagation thresholds, the interaction partitioned into an active baryonic sector (~5%), an unexcited non-radiative dark matter reserve (~27%), and unbonded diffuse dark energy (~68%). Cosmological redshift is approached as a compound effect of residual inertial drift and photon energy attenuation across static space. Black holes operate as structural containment anchors. Long-term localized decay leads to a proposed thermodynamic phase reset, returning the system to its primordial baseline for subsequent iterations.

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Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-09-17
DOI
https://doi.org/10.5281/zenodo.22807627
Primary Topic
Cosmology and Gravitation Theories
Type
article
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The Infiltration-Reaction Cyclic Universe (IRCU): A Conceptual Cosmological Hypothesis on Primordial Infiltration, Spatial Asymmetry, the Emergent Dark Sector, and Iterative Cosmic Evolution

Rajan Rajput
Zenodo (CERN European Organization for Nuclear Research)
Cosmology and Gravitation Theories
article

The Infiltration-Reaction Cyclic Universe (IRCU): A Conceptual Cosmological Hypothesis on Primordial Infiltration, Spatial Asymmetry, the Emergent Dark Sector, and Iterative Cosmic Evolution

Rajan Rajput
article en

Abstract

The standard Lambda-CDM framework successfully accounts for a wide range of cosmological observations, from large-scale structure formation to primordial nucleosynthesis. Concurrently, foundational questions regarding the physical nature of the earliest universe, metric singularities, and the microscopic origins of the dark sector (95% of the cosmic energy budget) remain active areas of inquiry. This paper articulates The Infiltration-Reaction Cyclic Universe (IRCU), an exploratory, first-principles conceptual hypothesis grounded in strict causality (ex nihilo nihil fit: nothing emerges from nothing). We hypothesize that cosmic dynamics unfold within an invariant, eternal, and non-expanding three-dimensional Euclidean space. The primordial pre-state is conceptualized as comprising two fundamental components: an unexcited, spatial scalar substrate designated as Latent Matter (M_latent), and discrete fields of Primordial Energy (E_free) possessing an intrinsic self-attraction and structural ordering tendency. Over extended durations, dispersed energy pockets aggregated into a directional flux (E_unified). Rather than an isotropic expansion from a centralized point, the genesis interaction is framed as a non-centric infiltration of this energy into the unstructured latent matter. Owing to spatial non-uniformity and propagation thresholds, the interaction partitioned into an active baryonic sector (~5%), an unexcited non-radiative dark matter reserve (~27%), and unbonded diffuse dark energy (~68%). Cosmological redshift is approached as a compound effect of residual inertial drift and photon energy attenuation across static space. Black holes operate as structural containment anchors. Long-term localized decay leads to a proposed thermodynamic phase reset, returning the system to its primordial baseline for subsequent iterations.

Zenodo (CERN European Organization for Nuclear Research)
Openalex Percentile: Top 10%
Cosmology and Gravitation Theories
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The Infiltration-Reaction Cyclic Universe (IRCU): A Conceptual Cosmological Hypothesis on Primordial Infiltration, Spatial Asymmetry, the Emergent Dark Sector, and Iterative Cosmic Evolution — Rajan Rajput · Zenodo (CERN European Organization for Nuclear Research) (2026) | TGRS Research Map | TGRS