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An effective field theory for coupled-channel scattering

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arxiv nucl-th/0402054 v2 pith:4UTJSXE2 submitted 2004-02-16 nucl-th hep-phnucl-ex

classification nucl-thhep-phnucl-ex
keywords channelslambdatheorycouplingeffectivefieldopenproblem
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

The problem of describing low-energy two-body scattering for systems with two open channels with different thresholds is addressed in the context of an effective field theory. In particular, the problem where the threshold is unnaturally small and the cross section at low energy is unnaturally large is considered. It is shown that the lowest-order point coupling associated with the mixing of the channels scales as $\Lambda^{-2}$ rather than $\Lambda^{-1}$ (the scaling of the same-channel coupling and the scaling in a single-channel case) where $\Lambda$ is the ultraviolet cutoff. The renormalization of the theory at lowest order is given explicitly. The treatment of higher orders is straightforward. The potential implications for systems with deep open channels are discussed.

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Cited by 1 Pith paper

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  1. A short review on the compositeness of the $X(3872)$

    hep-ph 2025-02 conditional novelty 5.0 of 10

    Radiative decays and the LHCb line-shape data are incompatible with a purely molecular X(3872) and favor a compact or partially composite state, with a proposed molecular-amplitude fit for a decisive test.

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