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Interpretation of near-threshold peaks using the method of independent S-matrix poles

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arxiv 2308.03325 v2 pith:YOGPTFRT submitted 2023-08-07 hep-ph nucl-th

classification hep-phnucl-th
keywords s-matrixpolesanalysisnear-thresholdfullindependentinterpretationmethod
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abstract

We propose a model-independent analysis of near-threshold enhancements using independent S-matrix poles. In this formulation, we constructed a Jost function with controllable zeros to ensure that no poles are generated on the physical Riemann sheet. We show that there is a possibility of misinterpreting the observed near-threshold signals if one utilized a limited parametrization and restrict the analysis to only one element of the S-matrix. Specifically, there is a possibility of the emergence of ambiguous pair of poles which are singularities of the full S-matrix but may not manifest in one of its elements. For a more concrete discussion, we focused on an effective two-channel scattering where the full S-matrix is a $2\times2$ matrix. We apply our method to the coupled two-channel analysis of the $P_\psi^N(4312)^+$ and found that the compact pentaquark interpretation cannot be ruled out yet.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Line shape analysis of $\Lambda(1405)$ in $\gamma p \rightarrow K^+\Sigma^-\pi^+$ reaction using convolutional neural network

    hep-ph 2025-06 conditional novelty 4.0 of 10

    A CNN trained on synthetic line shapes from a uniformized S-matrix classifies the CLAS Sigma-pi spectrum as the two-pole Lambda(1405) structure on the second Riemann sheet.

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