English

A $U$-Spin Anomaly in Charm CP Violation

High Energy Physics - Phenomenology 2023-04-12 v3 High Energy Physics - Experiment

Abstract

Recent LHCb data shows that the direct CP asymmetries of the decay modes D0π+πD^0\rightarrow \pi^+\pi^- and D0K+KD^0\rightarrow K^+K^- have the same sign, violating an improved UU-spin limit sum rule in an unexpected way at 2.1σ2.1\sigma. From the new data, we determine for the first time the imaginary part of the CKM-subleading, UU-spin breaking ΔU=1\Delta U=1 correction to the UU-spin limit ΔU=0\Delta U=0 amplitude. The imaginary part of the ΔU=0\Delta U=0 amplitude is determined by ΔaCPdir\Delta a_{CP}^{\mathrm{dir}}. The corresponding strong phases are yet unknown and could be extracted in the future from time-dependent measurements. Assuming O(1)\mathcal{O}(1) strong phases due to non-perturbative rescattering, we find the ratio of UU-spin breaking to UU-spin limit contributions to the CKM-subleading amplitudes to be (17374+85)%(173^{+85}_{-74})\%. This highly exceeds the Standard Model (SM) expectation of 30%\sim 30\% UU-spin breaking, with a significance of 1.95σ1.95\sigma. If this puzzle is confirmed with more data in the future, in the SM it would imply the breakdown of the UU-spin expansion in CKM-subleading amplitudes of charm decays. The other solution are new physics models that generate an additional ΔU=1\Delta U=1 operator, leaving the UU-spin power expansion intact. Examples for the latter option are an extended scalar sector or flavorful ZZ' models.

Keywords

Cite

@article{arxiv.2207.08539,
  title  = {A $U$-Spin Anomaly in Charm CP Violation},
  author = {Stefan Schacht},
  journal= {arXiv preprint arXiv:2207.08539},
  year   = {2023}
}

Comments

20 pages. Matches published version

R2 v1 2026-06-25T01:00:22.331Z