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Constructing chiral effective field theory around unnatural leading-order interactions

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arxiv 2112.00947 v2 pith:QDYXH5WB submitted 2021-12-02 nucl-th

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keywords fieldchiraleffectivetheoryconvergenceformulationleading-orderunnatural
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abstract

A momentum-dependent formulation based on a stationary spin-0 and isospin-1 dibaryon field is proposed to improve convergence of chiral effective field theory in the $\cs{1}{0}$ channel of $NN$ scattering. Although the two-parameter leading-order interaction appears to be unnatural, it nevertheless has the necessary features of an effective field theory. A rapid order-by-order convergence is found in $\cs{1}{0}$. As an application beyond the two-body level, the triton binding energy is studied and compared to standard chiral effective field theory with partly perturbative pions. The consistency of the chiral Lagrangian for the new formulation is examined by working out the pionic radiative corrections, and consequences of nontrivial chiral-connection terms are discussed.

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Cited by 1 Pith paper

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  1. Renormalizability and nonrenormalizability of nonlocal potentials

    nucl-th 2025-09 accept novelty 6.0 of 10

    Nonlocal long-range separable potentials in a two-nucleon toy model require nonlocal counterterms at NLO, and a two-pion-exchange-like nonlocal term cannot be renormalized without moving that structure into the leadin...

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