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Anomalous $Z^\prime$ bosons for anomalous $B$ decays

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arxiv 2105.06918 v3 pith:MVE4CCIC submitted 2021-05-14 hep-ph hep-th

classification hep-phhep-th
keywords modelsymmetriesanomalousgaugeleptonmassesaccidentalanomalies
verification ladder T0 review T1 audit T2 compute T3 formal

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abstract

Motivated by the intriguing discrepancies in $b\to s \ell\ell$ transitions, the fermion mass problem, and a desire to preserve the accidental symmetries of the Standard Model (SM), we extend the SM by an anomalous $U(1)_X$ gauge symmetry where $X=Y_3+a(L_\mu-L_\tau)/6$. The heavy $Z^\prime$ boson associated with spontaneously breaking $U(1)_X$ at the TeV scale mediates the $b\to s\ell\ell$ anomalies via $\mathcal{O}^\mu_9 \sim\frac{1}{\Lambda^2}(\bar{s}\gamma_\rho P_L b)(\bar{\mu} \gamma^\rho \mu)$. We show that this model, which features mixed gauge anomalies involving $U(1)_X$ and hypercharge, can be made anomaly-free for any $a\in \mathbb{Z}$ by integrating in a pair of charged fermions whose masses naturally reside somewhere between 1 and 30 TeV. The gauge symmetry permits only the third family Yukawas at the renormalisable level, and so the light quark masses and mixings are controlled by accidental $U(2)^3$ flavour symmetries which we assume are minimally broken alongside $U(1)_X$. The lepton sector is not governed by $U(2)$ symmetries, but rather one expects a nearly diagonal charged lepton Yukawa with $m_{e,\mu} \ll m_\tau$. The model does not explain the hierarchy $m_e\ll m_\mu$, but it does possess high quality lepton flavour symmetries that are robust to the heavy physics responsible for generating $m_{e,\mu}$. We establish the viability of these models by checking agreement with the most important experimental constraints. We comment on how the model could also explain neutrino masses and the muon $g-2$.

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Forward citations

Cited by 5 Pith papers

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  1. Radiative Mass Generation in Gauged Theories of Flavour: A Path to Fermion Mass Hierarchies

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  2. In Search of an Invisible $Z^\prime$

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    Anomaly cancellation forces every Z-pole-invisible, anomaly-free Z' to couple to valence quarks and at least two charged lepton flavours, ensuring LHC coverage.

  3. On the Robustness of type-II Seesaw Collider Searches

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    Adding a single effective operator that makes the doubly charged Higgs decay into two leptons and a photon weakens current ATLAS limits from ~1.1 TeV to ~0.7 TeV, but requiring a hard photon in the final state restore...

  4. A framework for missing-energy searches with anomalous light vectors

    hep-ph 2026-03 conditional novelty 6.0 of 10

    For light U(1)X vectors coupled to anomaly-sensitive currents, Wess-Zumino coefficients are fixed by anomaly matching, which lets all missing-energy searches (K, B, D, Z) be mapped onto one (m_X,g_X) plane with minima...

  5. Gauged $\tau$-lepton chiral currents and $B \to K^{(*)} E_{\rm miss}$

    hep-ph 2025-05 conditional novelty 6.0 of 10

    Gauging chiral tau lepton number with a light X boson of mass about 2.1 GeV explains the Belle II B to K missing-energy excess and survives existing bounds.

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