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Symmetries of the nucleon-nucleon $S$-matrix and effective field theory expansions

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arxiv 2112.05800 v2 pith:UWOYQJHS submitted 2021-12-10 nucl-th cond-mat.quant-gashep-ph

classification nucl-thcond-mat.quant-gashep-ph
keywords matrixeffectiveexpansionsscatteringsymmetriesexactlyfieldnucleon-nucleon
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

The s-wave nucleon-nucleon (NN) scattering matrix ($S$-matrix) exhibits UV/IR symmetries which are hidden in the effective field theory (EFT) action and scattering amplitudes, and which explain some generic features of the phase shifts. These symmetries offer clarifying interpretations of existing pionless EFT expansions, and suggest starting points for novel expansions. The leading-order (LO) $S$-matrix obtained in the pionless EFT with scattering lengths treated exactly is shown to have a UV/IR symmetry which leaves the sum of s-wave phase shifts invariant. A new scheme, which treats effective range corrections exactly, and which possesses a distinct UV/IR symmetry at LO, is developed up to NLO (next-to-LO) and compared with data.

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  1. Systematic study of large-momentum distribution in nuclei with the operator product expansion

    nucl-th 2024-12 conditional novelty 6.0 of 10

    Using OPE matched to Pionless EFT, the authors reproduce the deuteron's high-momentum nucleon distribution from scattering-state inputs, validating the method against the AV18 potential.

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