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Revisiting the Λ(1405)Λ(1405) pole structure with convolutional neural networks

Published 24 Aug 2026 in hep-ph and nucl-th | (2608.22747v1)

Abstract: We revisit the long-standing ambiguity surrounding the complex pole structure of the Λ(1405)Λ(1405) resonance by reframing it as a classification problem for convolutional neural networks (CNNs). By training our models to recognize subtle geometric variations on nearly degenerate lineshapes using targeted differential feature on empirical CLAS data, we establish a data-driven consensus on large inference samples. Our results show that the analytic structure characterized by two poles on the [bt][bt] sheet and additional pole on the [bb][bb] sheet globally dominates. The inference-guided pole parameter extraction reveals that the Λ(1405)Λ(1405) is a two-state system, characterized by a molecular state sitting below the KˉN\bar{K}N threshold and a non-molecular state lying above the ΣπΣπ threshold.

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