English

Looking into the quantum entanglement in $H\to ZZ^\star$ at LHC within SMEFT framework

High Energy Physics - Phenomenology 2024-12-30 v2 High Energy Physics - Theory

Abstract

We study HZZH\to ZZ^\star production process in final four lepton states at 1313 TeV LHC in SMEFT framework. The anomalous HZZHZZ couplings are parameterized with dimension-6 SU(2)L×U(1)YSU(2)_L\times U(1)_Y gauge invariant operators. We compute the eight polarizations of each ZZ boson and 6464 spin-correlations as asymmetries in angular functions of final decayed leptons in the rest frame of the ZZ boson. These asymmetries are further used to construct the joint density matrix (DM) for ZZZZ^\star system. However, such DM suffers from negative probability and eigenvalues. To alleviate the negativity issues, we reconstruct the DM using asymmetries of symmetrized angular functions owing to the indistinguishability of two ZZ bosons. The symmetrized DM is further employed to compute lower bound for concurrence as a witness of entanglement measurable at the collider experiments. The ZZZZ^\star system is found to be in an entangled state for all values of the anomalous couplings. Notably, while the lower bound exhibits poorer sensitivity to anomalous couplings compared to asymmetries, it demonstrates distinct behavior for CP-even and odd couplings.

Keywords

Cite

@article{arxiv.2411.19171,
  title  = {Looking into the quantum entanglement in $H\to ZZ^\star$ at LHC within SMEFT framework},
  author = {Amir Subba and Ritesh K. Singh and Rohini M. Godbole},
  journal= {arXiv preprint arXiv:2411.19171},
  year   = {2024}
}

Comments

21 pages, 4 figures