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A further study on the renormalization group aspect of perturbative corrections

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arxiv 2410.08845 v2 pith:TJNPFTBK submitted 2024-10-11 nucl-th

A further study on the renormalization group aspect of perturbative corrections

classification nucl-th
keywords issueundercountingpowerfurtherperturbativeshoulduncertainty
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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abstract

I perform a further study regarding a renormalization-group (RG) issue -- which concerns a wide variety of the so-called perturbative power counting under effective field theories (EFT) -- as pointed out by A. M. Gasparyan and E. Epelbaum [Phys. Rev. C 107, 034001 (2023)]. I show that the issue could originate from a wrong power counting, or from treating those incomplete, truncated amplitudes beyond the degree to which they should be trusted. Meanwhile, under EFT principles, one should always associate the result with an uncertainty that is adequate to its EFT order. One way to accommodate this is to encode its effect in a more general form of contact terms. In this regard, no RG issue is found in the $^3$P$_0$ nucleon-nucleon scattering under the Long and Yang power counting. In contrast, the RG issue under Weinberg's pragmatic proposal remains a problem even with uncertainty taken into account.

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Cited by 3 Pith papers

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  2. Perturbative calculations of light nuclei up to N$^3$LO in chiral effective field theory

    nucl-th 2026-04 unverdicted novelty 5.0

    Perturbative N3LO calculations in chiral EFT with RG-guided power counting yield robust predictions for light nuclei energies when calibrated on the tritium binding energy.

  3. Auxiliary counterterms and their role in effective field theory

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