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February 24, 20260 citationsOpen Access

Strange Quark Matter Formation During the QCD Epoch: Implications for Dark Matter within the ΛCDM Framework

AGAlik Gimranov

Key Points

  • Investigate the potential formation of stable strange quark matter during the QCD phase transition and its implications for dark matter.
  • Analyzed conditions for formation of strange quark matter
  • Evaluated stability criteria for strange quark nuggets
  • Estimated relic abundance of stable strange quark matter
  • Considered observational constraints within the ΛCDM cosmology
  • Identified conditions under which stable strange quark matter could form
  • Proposed that strange quark nuggets could contribute to dark matter density
  • Confirmed compatibility with ΛCDM cosmology without modifying inflationary dynamics

Abstract

The QCD phase transition at temperatures T∼150–200T 150–200T∼150–200 MeV represents a well-defined epoch in the standard thermal history of the Universe. While the ΛCDM model successfully describes large-scale cosmological evolution, the microphysics of strongly interacting matter during this epoch remains an active area of theoretical investigation. This work explores the possibility that stable strange quark matter (SQM), as proposed by Edward Witten, may have formed during the QCD transition. If sufficiently stable, strange quark nuggets (SQNs) could survive to the present epoch and contribute to the dark matter density. We analyze formation conditions, stability criteria, relic abundance estimates, and observational constraints. The framework remains fully compatible with ΛCDM cosmology and does not modify inflationary dynamics or the standard expansion history.

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Cite This Study

Alik Gimranov (2026) studied this question.

synapsesocial.com/papers/699d3fc8de8e28729cf6473chttps://doi.org/10.5281/zenodo.18730429
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