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Symmetry from entangle- ment suppression

7 Pith papers cite this work. Polarity classification is still indexing.

7 Pith papers citing it

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UNVERDICTED 7

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representative citing papers

Higgs Scattering and Entanglement in SMEFT

hep-ph · 2026-06-23 · unverdicted · novelty 7.0

Higgs scattering in SMEFT is analyzed with von Neumann entropy, linear entropy, and concurrence as momentum-isospin entanglement measures, determined by Wilson coefficients of dimension-6 and dimension-8 operators, revealing energy growth, interference cancellations, suppression conditions, and link

Entangling Power: A Probe of Symmetry and Integrability in Quantum Many-Body Systems

quant-ph · 2026-05-20 · unverdicted · novelty 6.0

Entangling power in Heisenberg spin chains shows a monotonic decrease with growing symmetry in small models, sharp dips at SU(2) and free-fermion points in finite chains, and vanishes at SU(2) points but maximizes at the free-fermion point in the thermodynamic limit for the S-matrix.

A collider as a quantum computer

hep-ph · 2026-05-07 · unverdicted · novelty 6.0

Collider scattering processes such as electron-positron annihilation to muon pairs can be represented as quantum circuits with unitary and non-unitary components.

Qubit entanglement from forward scattering

hep-ph · 2025-10-05 · unverdicted · novelty 6.0

In perturbative relativistic 2→2 scattering the concurrence of the traced-out qubit density matrix depends at leading order on the real part of the inelastic forward amplitude.

Positivity in Amplitudes and Quantum Entanglement

hep-th · 2024-02-26 · unverdicted · novelty 6.0

Links amplitude positivity to S-matrix entanglement consistency for flavored states, analyzes disentanglers, and introduces wave-packet regularization for entanglement expressions.

citing papers explorer

Showing 7 of 7 citing papers.

  • Higgs Scattering and Entanglement in SMEFT hep-ph · 2026-06-23 · unverdicted · none · ref 5

    Higgs scattering in SMEFT is analyzed with von Neumann entropy, linear entropy, and concurrence as momentum-isospin entanglement measures, determined by Wilson coefficients of dimension-6 and dimension-8 operators, revealing energy growth, interference cancellations, suppression conditions, and link

  • Automated computation of spin-density matrices and quantum observables for collider physics hep-ph · 2025-10-20 · unverdicted · none · ref 102

    An automated framework in MadGraph5_aMC@NLO computes tree-level production spin-density matrices and quantum observables for generic collider processes, with validation on ttbar and VV and new applications to multi-top final states.

  • Entangling Power: A Probe of Symmetry and Integrability in Quantum Many-Body Systems quant-ph · 2026-05-20 · unverdicted · none · ref 24

    Entangling power in Heisenberg spin chains shows a monotonic decrease with growing symmetry in small models, sharp dips at SU(2) and free-fermion points in finite chains, and vanishes at SU(2) points but maximizes at the free-fermion point in the thermodynamic limit for the S-matrix.

  • A collider as a quantum computer hep-ph · 2026-05-07 · unverdicted · none · ref 35

    Collider scattering processes such as electron-positron annihilation to muon pairs can be represented as quantum circuits with unitary and non-unitary components.

  • Qubit entanglement from forward scattering hep-ph · 2025-10-05 · unverdicted · none · ref 34

    In perturbative relativistic 2→2 scattering the concurrence of the traced-out qubit density matrix depends at leading order on the real part of the inelastic forward amplitude.

  • Positivity in Amplitudes and Quantum Entanglement hep-th · 2024-02-26 · unverdicted · none · ref 41

    Links amplitude positivity to S-matrix entanglement consistency for flavored states, analyzes disentanglers, and introduces wave-packet regularization for entanglement expressions.

  • Quantum Resources and Wigner Symmetry in Nucleon-Nucleon Scattering from Effective Field Theory nucl-th · 2026-06-15 · unverdicted · none · ref 13

    Under Wigner's SU(4) symmetry the neutron-proton scattering amplitude generates no new quantum resources while same-nucleon channels do due to identical-particle constraints.