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Qubit-Qutrit Quantum Tomography of hadronic Λϕ and ΛK 0 systems

Veronica Kanachova, Feng Liu, Zhoudunming Tu

hep-pharXiv:2609.11151

Abstract

Quantum-information observables have emerged in recent years as new tools in nuclear and particle physics, from entanglement in top-quark pairs to spin correlations in ΛΛ production. Extending these studies to unequal-spin hadronic final states poses a fundamental challenge: the 6×6 density matrix of a qubit-qutrit system contains 35 independent spin parameters, but the decays of ΛV pairs, with V=ϕ or K*0, provide access to only 23 due to the hidden vector polarization from the strong decay. In this Letter, we formulate a qubit-qutrit quantum tomography (QQQT) technique for these spin-121 systems and establish exact criteria for entanglement certification from the incomplete density matrix. Compared with the ΛΛ system, QQQT of Λϕ and ΛK*0 provides a new probe of nonperturbative QCD hadronization, enabling a direct comparison of the spin evolution of entangled quark pairs produced from the vacuum as they hadronize into a baryon or a vector meson.

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