paper

Hyperon-pair spin tomography beyond scalar spin correlations

arXiv:2606.24811

Abstract

Spin correlations measured after hadronization probe how quantum information is transported through confinement. We formulate a process-independent spin-tomography framework for pairs in which the weak-decay angles determine the full two-spin tensor rather than only its scalar trace. Applied to the short-range STAR correlation in unpolarized , the framework shows that the published scalar leaves a continuous density-matrix degeneracy: separable tensor completions and completions that violate the positive-partial-transpose (PPT) criterion can have the same trace. The missing observables are the transverse and longitudinal tensor components and their anisotropy . A local string-breaking benchmark turns the STAR trace into the falsifiable pattern , , and . We further show that feed-down must be treated as a tensor response rather than as a universal scalar dilution. In the complementary calibration channel, the same benchmark predicts a centrally enhanced of order in Belle II kinematics, measurable with about selected pairs for nominal spin-transfer parameters. A claim of entanglement requires the reconstructed two-spin density matrix, not the scalar trace alone, to violate the PPT bound.

This paper is being withdrawn because the numerical results contain errors that require significant revisions

Hyperon-pair spin tomography beyond scalar spin correlations · wovepaper