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Applied nonrelativistic conformal field theory: scattering-length and effective-range corrections to unnuclear physics

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arxiv 2309.15177 v1 pith:INORBJGS submitted 2023-09-26 hep-th nucl-th

classification hep-thnucl-th
keywords conformaltheorycorrectionsfieldneutronsnonrelativisticoperatorseffective-range
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

Due to an accidentally large $s$-wave scattering length, in a relatively wide range of energy, neutrons are approximately described by the nonrelativistic conformal field theory of unitarity fermions, perturbed by one relevant and an infinite number of irrelevant operators. We develop a formalism which provides a nonperturbative definition of local operators in that nonrelativistic conformal field theory. We compute the scattering-length and effective-range corrections to the two-point functions of primary charge-three operators using the technique of conformal perturbation theory. These calculations allow us to find the first corrections to the scale-invariant behavior of the rate of nuclear reactions with three neutrons in the final state in the regime when the neutrons have small relative momenta.

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Cited by 1 Pith paper

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  1. Unnuclear matter at large-charge

    nucl-th 2025-01 conditional novelty 6.0 of 10

    In the large-charge EFT of neutrons, effective-range corrections to the two-point function first appear at second order in the effective range, and the deformed theory has a narrow but usable perturbative window for Q...

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