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Point Production of a Nonrelativistic Unparticle Recoiling Against a Particle

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arxiv 2301.04399 v1 pith:OICLI74G submitted 2023-01-11 hep-th hep-phnucl-th

classification hep-thhep-phnucl-th
keywords pointunparticlenonrelativisticproductionconformalparticleraterecoiling
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A nonrelativistic unparticle can be defined as an excitation created by an operator with a definite scaling dimension in a nonrelativistic field theory with an approximate conformal symmetry. The point production rate of an unparticle has power-law dependence on its total energy with an exponent determined by its scaling dimension. We use the exact result for the 3-point function of primary operators in a nonrelativistic conformal field theory to derive the contribution to the point production rate of the unparticle from its decay into another unparticle recoiling against a particle. In the case where the conformal symmetry is broken by a large positive scattering length, we deduce the exponent of the energy in the point production rate of the loosely bound two-particle state recoiling against a particle with large relative momentum.

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  1. Short-distance production of three particles with large scattering length

    nucl-th 2026-01 conditional novelty 6.0 of 10

    Short-distance production of three neutrons in pionless EFT is dominated by the P-wave and shows no resonance-like structure; three bosons show Efimov-resonance peaks, and effective-range corrections are small.

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