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April 14, 20260 citationsOpen Access

Conditional Resonant Recirculation of 7Li Near the 441.4 keV Resonance: A Quantitative Bottleneck Framework for Post-BBN Lithium Depletion

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WPWilliam T Partin

Key Points

  • The aim of this study is to quantify post-BBN lithium depletion through the analysis of a specific nuclear reaction channel.
  • Analyzed the ^7Li(p,α)2α reaction at the 441.4 keV resonance.
  • Developed a quantitative framework to identify transport thresholds and recurrence rates.
  • Examined the impact of primordial dilution on astrophysical depletion probabilities.
  • Identified the need for approximately 10^10 effective resonance returns for significant depletion.
  • Reframed the issue from reaction availability to transport sustainability in nonequilibrium conditions.
  • Established a transport bottleneck for future models of primordial plasma transport.

Abstract

This manuscript develops a quantitative bottleneck framework for post-BBN lithium depletion through the known 441. 4 keV resonance in the ⁷Li (p, ) 2 reaction. The central result is not a claim of a completed lithium solution, but a reduction of the problem to a transport threshold. While the resonance provides a real nuclear destruction channel, primordial dilution suppresses the one-pass astrophysical depletion probability to a negligible level. In the dilute rare-event regime, any astrophysically non-negligible depletion through this channel requires repeated effective resonance returns corresponding to an effective recurrence burden of order Nₑff ~ 10¹0. The work therefore reframes the limiting issue from reaction availability to transport sustainability in a driven nonequilibrium proton population. Its principal contribution is the explicit identification of this transport bottleneck and the associated recurrence benchmark as a baseline quantitative condition for future models of primordial plasma transport. Related companion work: Partin, W. T. (2026). Curvature-Driven Reconstruction: A Local GR/QFT Mechanism Study. Zenodo. doi: 10. 5281/zenodo. 19101894. Version 5. 7: Minor revision including updated conceptual-source citation (White Paper v4. 4) and clarification of transport non-substitutability, failure conditions, and scope discipline. No changes to the core derivation or threshold result.

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William T Partin (2026) studied this question.

synapsesocial.com/papers/69ddda0de195c95cdefd77e2https://doi.org/10.5281/zenodo.19544280
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Conditional Resonant Recirculation of ⁷Li Near the 441.4 keV Resonance: White Paper v4.4, A Conceptual Framework2026
  2. 2Conditional Resonant Recirculation of ⁷Li Near the 441.4 keV Resonance: White Paper v1.0, A Conceptual Framework2026
  3. 3The Lithium Anomaly as a Topological Resonance: Synchronizing Bulk Leakage with the Deuterium Bottleneck via Stochastic Resonance2026
  4. 4Transport Amplification from Curvature-Driven Confinement A Quantitative Bridge Between Local Reconstruction and Lithium Depletion2026
  5. 5Resolution of the Cosmological Lithium Problem via Topological Hydro-Elasticity of the 4D Continuum2026