English

Quantum Magic Reveals CP Phases Invisible to Entanglement in Spin-0 Decays

Quantum Physics 2026-05-20 v1 High Energy Physics - Phenomenology High Energy Physics - Theory

Abstract

All standard scalar quantum-information measures -- concurrence, negativity, entanglement entropy, the optimized CHSH bound, and quantum Fisher information -- are CP-blind in ideal \\ spin-0 ffˉ\to f\bar f decays because the two-qubit spin state is maximally entangled for every CP angle. We show that stabilizer magic, fixed in the physical Pauli frame of spin analysis, escapes this blind spot: the stabilizer R\'enyi entropy admits an exact closed form, vanishing at CP-definite and Clifford phases and peaking at maximal non-Clifford mixing. Two experimentally accessible, magic-inspired CP witnesses follow; the linear amplitude is 14.3×14.3\times more efficient than its quartic counterpart and reaches discovery-level sensitivity at the HL-LHC for Hτ+τH\to\tau^+\tau^-.

Keywords

Cite

@article{arxiv.2605.19117,
  title  = {Quantum Magic Reveals CP Phases Invisible to Entanglement in Spin-0 Decays},
  author = {Nicolas Viaux and Ariel Norambuena and Pedro Orellana},
  journal= {arXiv preprint arXiv:2605.19117},
  year   = {2026}
}