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arXiv:2604.11226·v2·Nuclear Theory

Inclusive breakup reactions with non-spectator fragments: Generalization of the IAV sum rules

Jin Lei

Abstract

The Ichimura-Austern-Vincent (IAV) sum rule formalism for inclusive breakup reactions treats the detected fragment as a spectator by replacing its interaction with the target by an optical potential. This assumption becomes questionable when is a loosely bound composite particle such as a deuteron. I derive a generalization that removes the spectator approximation and retains 's internal degrees of freedom, providing state-resolved inclusive cross sections. Within the DWBA, all non-spectator effects enter through the source function via the operator . The exact sum rule involves the full resolvent , while a single-channel IAV-like expression is recovered only when the explicit target dependence of is neglected; post-prior equivalence is preserved in both cases. A key conceptual finding is that the standard IAV result for structureless corresponds, under closure, to the \emph{total} inclusive cross section summed over all of 's internal states, rather than the cross section for in a specific state. An operator-level estimate for on shows that the non-spectator correction is not a small perturbation at the nuclear surface. The present work is purely formal: it establishes the theoretical framework and identifies the relevant operators, while quantitative assessment of the cross-section impact awaits a full numerical evaluation of the source integrals.

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