English

2024 Update on $\varepsilon_K$ with lattice QCD inputs

High Energy Physics - Lattice 2025-02-11 v2

Abstract

We report recent progress on εK\varepsilon_K evaluated directly from the standard model (SM) with lattice QCD inputs such as B^K\hat{B}_K, exclusive Vcb|V_{cb}|, Vus|V_{us}|, Vud|V_{ud}|, ξ0\xi_0, ξ2\xi_2, ξLD\xi_\text{LD}, fKf_K, and mcm_c. We find that the standard model with exclusive Vcb|V_{cb}| and lattice QCD inputs describes only 2/365%2/3 \cong 65\% of the experimental value of εK|\varepsilon_K| and does not explain its remaining 35\%, which represents a strong tension in εK|\varepsilon_K| at the 5.1σ4.1σ5.1\sigma \sim 4.1\sigma level between the SM theory and experiment. We also find that this tension disappears when we use the inclusive value of Vcb|V_{cb}| obtained using the heavy quark expansion based on the QCD sum rule approach. We also report results for εK|\varepsilon_K| obtained using the Brod-Gorbahn-Stamou (BGS) method for ηi\eta_i of utu-t unitarity, which leads to even a stronger tension of 5.7σ4.2σ5.7\sigma \sim 4.2\sigma with lattice QCD inputs.

Keywords

Cite

@article{arxiv.2501.00215,
  title  = {2024 Update on $\varepsilon_K$ with lattice QCD inputs},
  author = {Seungyeob Jwa and Jeehun Kim and Sunghee Kim and Sunkyu Lee and Weonjong Lee and Jaehoon Leem and Sungwoo Park},
  journal= {arXiv preprint arXiv:2501.00215},
  year   = {2025}
}

Comments

11 pages, 4 figures, Lattice 2024 proceeding. arXiv admin note: substantial text overlap with arXiv:2312.02986, arXiv:2301.12375

R2 v1 2026-06-28T20:53:00.539Z