TDA factorization with public DensityScattering code and SRG-And-Back scheme yields scattering observables on 3H, 3He, 4He, 6Li from chiral potentials with uncertainties below 6%.
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Applies Lorentz-boosted form factors via Licht-Pagnamenta and Mitra-Kumari formalisms to link nuclear boosts with cluster configurations and resolve light nuclei charge radius discrepancies.
citing papers explorer
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Scattering Observables from Few-Body Densities and Application in Light Nuclei
TDA factorization with public DensityScattering code and SRG-And-Back scheme yields scattering observables on 3H, 3He, 4He, 6Li from chiral potentials with uncertainties below 6%.
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Clustering in hadrons and light nuclei from Lorentz boosted form factors
Applies Lorentz-boosted form factors via Licht-Pagnamenta and Mitra-Kumari formalisms to link nuclear boosts with cluster configurations and resolve light nuclei charge radius discrepancies.