Tensor-current contributions to B Anomalies
Abstract
Tensor-current operators, potentially generated by scalar leptoquarks in grand unified theories (GUTs), are among the plausible new physics (NP) candidates suggested by the anomalies observed in -meson decays. As experimental data continue to accumulate, exploring this possibility remains timely and well motivated. In this work, we present a systematic analysis of representative tensor-current Wilson coefficients () in transitions. By incorporating contributions from the high- region, our framework fully exploits the available experimental data across the entire range. Within this setup, five distinct lepton-flavor-universal (LFU) scenarios are proposed and tested through global fits. Our results show that it is difficult to resolve the tension between experimental measurements and theoretical predictions using only and . Meanwhile, the significance of remains essentially unchanged, even in the presence of tensor contributions. In one representative scenario (S-III), we obtain , with a reduced chi-squared statistic . Furthermore, we derive a stringent 95 C.L. constraint on tensor operators, which provides one of the strongest bounds to date on and .
Cite
@article{arxiv.2510.05541,
title = {Tensor-current contributions to B Anomalies},
author = {Qiaoyi Wen and Fanrong Xu},
journal= {arXiv preprint arXiv:2510.05541},
year = {2025}
}
Comments
44 pages, 9 figures, 2 tables