Bhabha scattering with an initially entangled spectator particle generates genuine tripartite entanglement quantified via four metrics, with scattering momentum and initial entanglement as key resources and relaxed monogamy in the non-relativistic regime.
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The paper proposes that equality between initial-state entanglement entropy and final-state thermodynamic entropy demonstrates entanglement as the driver of particle production and thermal-like behavior in high-energy collisions.
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Genuine tripartite entanglement in Bhabha scattering with an entangled spectator particle
Bhabha scattering with an initially entangled spectator particle generates genuine tripartite entanglement quantified via four metrics, with scattering momentum and initial entanglement as key resources and relaxed monogamy in the non-relativistic regime.
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Exploring Particle Production and Thermal-Like Behavior through Quantum Entanglement
The paper proposes that equality between initial-state entanglement entropy and final-state thermodynamic entropy demonstrates entanglement as the driver of particle production and thermal-like behavior in high-energy collisions.