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March 21, 20260 citationsOpen Access

The Samarium Shield: Cleaning the Queue — A Constraint-Surface Framework for Nuclear Remediation

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JCJay Andrew Carpenter

Key Points

  • The research aims to clarify the boundary conditions related to nuclear remediation through the properties of promethium decay.
  • Analysis of eigenvalues associated with technetium and promethium.
  • Exploration of thermal neutron capture cross-sections among fission products.
  • Application of mathematical frameworks related to the Klein bottle topology.
  • Promethium decays to Sm-149, the strongest stable neutron absorber identified.
  • The neutron capture cross-section of Sm-149 is 1,761× greater than that of Tc-99.
  • The development of a cleanup mechanism informed by radiotrophic biology and natural reactor analogs.

Abstract

The companion paper (Carpenter, 2026r) identified technetium (Z = 43) as the floor of the Klein bottle eigenvalue β⁻¹ = 43.619 — the nuclear-scale repair station where fission's perturbation produces its own dampener via Le Chatelier feedback. That paper carried a boundary statement: "The tower predicts Z = 43 but not Z = 61." This paper resolves the boundary. The Klein bottle is topologically two Möbius strips glued at their boundary. The diagonal through both layers scales the eigenvalue by √2: ⌊β⁻¹√2⌋ = ⌊61.687⌋ = 61 = Promethium. The critical result is what promethium decays to. Pm-149 (t₁/₂ = 53.1 hr) β⁻-decays to Sm-149, which has a thermal neutron capture cross-section of 40,140 barns — the most powerful stable neutron absorber among fission products, 1,761× greater than Tc-99. The first hole in the periodic table makes the processor. The second hole makes the shield. The √2φ extension yields Es (Z = 99), Ga (Z = 31), Ne (Z = 10), Li (Z = 3) — the boundary column. The frog doctrine's metabolisation principle, radiotrophic fungal biology, and the Oklo natural reactor provide independent physical instantiations of the constraint-surface cleanup mechanism.

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Cite This Study

Jay Andrew Carpenter (2026) studied this question.

synapsesocial.com/papers/69be36666e48c4981c6754fchttps://doi.org/10.5281/zenodo.19079970
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