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Dimuonium $(\mu^+\mu^-)$ Production in a Quark-Gluon Plasma
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abstract
We study dimuonium $(\mu^+\mu^-)$ production in the quark-gluon plasma created in relativistic heavy ion collisions. The production is controlled by the process $q\bar q\rightarrow (\mu^+\mu^-)g$, and the dimuonium motion in the plasma is described by a transport equation. While the electrodynamics dominated dimuonium yield is not high enough, the transverse energy distribution carries the information of the plasma at RHIC and LHC energies.
Forward citations
Cited by 3 Pith papers
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Searching for True Muonium in Relativistic Heavy Ion Collisions
The paper predicts effective true muonium production cross sections of 1.23 μb in 200 GeV AuAu and 14.2 μb in 5.02 TeV PbPb collisions, corresponding to O(10^4) and O(10^5) atoms per billion central events.
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Production of leptonium in heavy quarkonium decays
J/psi decays can produce ortho-dimuonium at a branching fraction of about 1.5e-12, while Upsilon decays allow tauonium production, with several channels potentially observable at planned facilities.
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Creating true muonium via charmonium radiative decay
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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