Muonic kaon atoms form in D0 decays with branching ratio 2.29×10^{-10} and via QGP coalescence, with projected yields at LHC and RHIC sufficient for first observation and secondary-vertex reconstruction.
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Finite nuclear size corrections to hyperfine structure in muonic atoms increase monotonically with nuclear charge Z, show state dependence, and vary significantly with the choice of nuclear model.
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Production of muonic kaon atoms at high-energy colliders
Muonic kaon atoms form in D0 decays with branching ratio 2.29×10^{-10} and via QGP coalescence, with projected yields at LHC and RHIC sufficient for first observation and secondary-vertex reconstruction.
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Finite Nuclear Size Corrections on Hyperfine Structure in Muonic Atoms
Finite nuclear size corrections to hyperfine structure in muonic atoms increase monotonically with nuclear charge Z, show state dependence, and vary significantly with the choice of nuclear model.