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March 3, 2026Physical review. D/Physical review. D.5 citationsOpen Access

Spin-spin entanglement in diffractive heavy-quark production

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AAnonymousYHYoshitaka Hatta

Key Points

  • The calculated spin density matrix indicates maximal entanglement for longitudinally polarized virtual photons, impacting quantum mechanics.
  • For transversely polarized photons, a significant tension exists where maximal entanglement coincides with maximal violation of Bell inequalities.
  • Pomeron exchange shows unique signatures in entanglement behavior, enhancing understanding of heavy-quark production in collisions.
  • Further exploration in ultraperipheral collisions might uncover deeper characteristics of quantum entanglement in heavy-quark systems.

Abstract

We calculate the spin density matrix of a heavy-quark-antiquark pair ( b b ¯ , c c ¯ or s s ¯ ) diffractively produced in deep inelastic scattering and ultraperipheral collisions. We show that the Pomeron exchange leaves characteristic imprints on the entanglement pattern between the quark and the antiquark. For the longitudinally polarized virtual photon, the pair always exhibits maximal entanglement and maximal violation of the Bell-Clauser-Horne-Shimony-Holt inequality. For the transversely polarized photon, the pair is always entangled and Bell violating, reaching maximal entanglement and maximal violation simultaneously when the transverse momentum approximately equals the quark mass.

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Cite This Study

Anonymous et al. (2026) studied this question.

synapsesocial.com/papers/69a76073c6e9836116a2d345https://doi.org/10.1103/gbk8-z3dd
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