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The REDTOP experiment: Rare $\eta/\eta^{\prime}$ Decays To Probe New Physics

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arxiv 2203.07651 v3 pith:QGHHINB7 submitted 2022-03-15 hep-ex hep-ph

classification hep-exhep-ph
keywords decaysexperimentphysicsprimerareredtopseverallepton
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

The $\eta$ and $\eta^{\prime}$ mesons are nearly unique in the particle universe since they are almost Goldstone bosons and the dynamics of their decays are strongly constrained. The integrated $\eta$-meson samples collected in earlier experiments amount to $\sim10^{9}$ events. A new experiment, REDTOP (Rare Eta Decays To Probe New Physics), is being proposed, with the intent of collecting a data sample of order 10$^{14}$ $\eta$ (10$^{12}$ $\eta^{\prime}$) for studying very rare decays. Such statistics are sufficient for investigating several symmetry violations, and for searching for particles and fields beyond the Standard Model. In this work we present several studies evaluating REDTOP sensitivity to processes that couple the Standard Model to New Physics through all four of the so-called \emph{portals}: the Vector, the Scalar, the Axion and the Heavy Lepton portal. The sensitivity of the experiment is also adequate for probing several conservation laws, in particular $CP$, $T$ and Lepton Universality, and for the determination of the $\eta$ form factors, which is crucial for the interpretation of the recent measurement of muon $g-2$.

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  1. Simulation of dark photon sensitivity in $\eta \rightarrow \gamma e^+e^-$ at HIAF

    hep-ex 2025-06 conditional novelty 4.0 of 10

    Simulations of a proposed HIAF eta factory project a dark photon branching ratio limit of 10^-6 to 10^-7 and a kinetic mixing sensitivity of epsilon^2 about 10^-7 for masses up to 0.4 GeV.

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