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Power Counting of Contact-Range Currents in Effective Field Theory

2 Pith papers cite this work. Polarity classification is still indexing.

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abstract

We analyze the power counting of two-body currents in nuclear effective field theories (EFTs). We find that the existence of non-perturbative physics at low energies, which is manifest in the existence of the deuteron and the 1S0 NN virtual bound state, combined with the appearance of singular potentials in versions of nuclear EFT that incorporate chiral symmetry, modifies the renormalization-group flow of the couplings associated with contact operators that involve nucleon-nucleon pairs and external fields. The order of these couplings is thereby enhanced with respect to the naive-dimensional-analysis estimate. Consequently, short-range currents enter at a lower order in the chiral EFT than has been appreciated up until now, and their impact on low-energy observables is concomitantly larger. We illustrate the changes in the power counting with a few low-energy processes involving external probes and the few-nucleon systems, including electron-deuteron elastic scattering and radiative neutron capture by protons.

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years

2026 1 2024 1

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UNVERDICTED 2

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Dark Matter

hep-ph · 2024-06-03 · unverdicted · novelty 2.0

A review summarizing current observational, experimental, and theoretical results on dark matter.

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Showing 2 of 2 citing papers.

  • Auxiliary counterterms and their role in effective field theory nucl-th · 2026-03-02 · unverdicted · none · ref 12 · internal anchor

    Auxiliary counterterms provide exact cutoff independence in EFTs but encode no new physics and aid renormalization consistency and convergence.

  • Dark Matter hep-ph · 2024-06-03 · unverdicted · none · ref 65 · internal anchor

    A review summarizing current observational, experimental, and theoretical results on dark matter.