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Low-energy electron-positron collider to search and study (\mu^+\mu^-) bound state

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arxiv 1708.05819 v1 pith:3OYTSMTK submitted 2017-08-19 physics.acc-ph hep-ex

classification physics.acc-phhep-ex
keywords colliderbeambounddimuoniumenergyacceleratorallowsangle
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abstract

We discuss a low energy $e^+e^-$ collider for production of the not yet observed ($\mu^+\mu^-$) bound system (dimuonium). Collider with large crossing angle for $e^+e^-$ beams intersection produces dimuonium with non-zero momentum, therefore, its decay point is shifted from the beam collision area providing effective suppression of the elastic $e^+e^-$ scattering background. The experimental constraints define subsequent collider specifications. We show preliminary layout of the accelerator and obtained main parameters. High luminosity in chosen beam energy range allows to study $\pi^\pm$ and $\eta$ -mesons.

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Cited by 1 Pith paper

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  1. Creating true muonium via charmonium radiative decay

    hep-ph 2024-12 conditional novelty 6.0 of 10

    Predicts Br(J/psi -> gamma + true para-muonium) around 7e-13, implying about 2-3 events per year at the proposed Super Tau-Charm Facility.

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