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Perturbative $NN$ scattering in chiral effective field theory

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arxiv 1807.04407 v2 pith:4GI2SBB7 submitted 2018-07-12 nucl-th

classification nucl-th
keywords chiraltheoryperturbativeangulareffectivefieldforcespartial
verification ladder T0 review T1 audit T2 compute T3 formal

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abstract

Within the framework of chiral effective field theory, perturbative calculation for $NN$ scattering is carried out in partial waves with orbital angular momentum $L \geqslant 1$. The primary goal is to identify the lowest angular momenta at which perturbative treatment of chiral forces can apply. Results up to the order where the subleading two-pion exchange appears are shown. It is concluded that perturbation theory applies to all partial waves but ${}^1S_0$, ${}^3S_1 - {}^3D_1$, and ${}^3P_0$. Where it is applicable, perturbation theory with the delta-less chiral forces produces good agreement with the empirical phase shifts up to $k_\text{c.m.} \simeq 300$ MeV.

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  1. Perturbative calculations of nucleon-deuteron elastic scattering in chiral effective field theory

    nucl-th 2026-02 conditional novelty 6.0 of 10

    A fixed-kernel perturbation framework computes nucleon-deuteron scattering up to next-to-leading order in chiral EFT, benchmarked against wave-packet continuum discretization.

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