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October 12, 20250 citationsOpen Access

Future–Mass Projection with a Constant Dark-to-Baryon Background: A Renormalized FMP Variant Preserving ΩDM/Ωb = 5.4

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FLFarzad Lali

Key Points

  • The constant-R Future-Mass Projection improves galaxy clustering without new particles.
  • Using a dark-to-baryon matter ratio of 5.4, clustering dynamics and lensing observations validate the model.
  • Theoretical framework maintains background expansion while analyzing fluctuations in structure formation.
  • This approach reveals potential signatures in non-gravitational dark matter searches, emphasizing observed baryon dynamics.

Abstract

We develop a renormalized variant of Future–Mass Projection (FMP) in which the cosmological dark-to-baryon matter ratio is held fixed at all redshifts, \ (R (z) F/b=R₀=5. 4 \), thereby preserving the ΛCDM background inferred from precision probes. The key step removes the spatial zero mode of the FMP response and reinstates a fixed homogeneous term \ (R₀\, b (a) \) ; only inhomogeneous fluctuations δF contribute to structure. We formulate the model, derive its linear response, prove that the background expansion H (a) and CMB/BAO/SNe distance relations remain unchanged, and place phenomenological priors on the fluctuation transfer TF (k, a) using weak lensing and redshift-space distortions. The resulting constant-R FMP (cFMP) acts as a scale-localized, baryon-tethered enhancement to clustering without introducing new particles or altering gravitational-wave propagation. We outline decisive tests: (i) baryon–mass co-variations in galaxies and groups (dynamics and lensing with the same kernel), (ii) the rarity of truly baryon-free subhalos in strong lenses, (iii) null signals in non-gravitational dark-matter searches, and (iv) merger chronologies in Bullet-like clusters. All references cited are peer reviewed.

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Cite This Study

Farzad Lali (2025) studied this question.

synapsesocial.com/papers/68ebc91af2c3e4d8d926e343https://doi.org/10.20944/preprints202510.0416.v1
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