Dark pions stabilized by U(1) flavor symmetry in an SU(3)/SO(3) dark sector obtain the correct thermal relic density through up-scatterings to heavier mesons and dark eta decays, producing LHC signals from long-lived particle showers.
Aiet al., Nucl
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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.
First absolute branching fraction measurements yield (3.81 ± 0.18stat ± 0.20syst)×10^{-4} for D0→γ K*0 and (2.51 ± 0.44stat ± 0.11syst)×10^{-5} for D0→γφ with 26.8σ and 7.9σ significance.
Transverse polarization in e+e- collisions generates maximally entangled fermion pairs in QED processes and boosts entanglement in electroweak and Bhabha scattering.
STCF with 1 ab^{-1} can probe several-TeV new-physics scales in sterile-neutrino EFT and constrain an RPV SUSY parameter to ~0.1 TeV^{-2} for apparent BNV in unexplored Lambda_c+ channels.
STCF can reach |V_eN|^2 values one to two orders of magnitude below current bounds for heavy neutral leptons via displaced-vertex searches from ALP decays in D-meson production.
citing papers explorer
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Dark Matter on a Slide
Dark pions stabilized by U(1) flavor symmetry in an SU(3)/SO(3) dark sector obtain the correct thermal relic density through up-scatterings to heavier mesons and dark eta decays, producing LHC signals from long-lived particle showers.
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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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Measurements of the absolute branching fractions of $D^0\to\gamma \bar K^{*0}$ and $D^0\to\gamma \phi$
First absolute branching fraction measurements yield (3.81 ± 0.18stat ± 0.20syst)×10^{-4} for D0→γ K*0 and (2.51 ± 0.44stat ± 0.11syst)×10^{-5} for D0→γφ with 26.8σ and 7.9σ significance.
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Spin Correlation and Quantum Entanglement of Fermion Pairs in Transversely Polarized $e^-e^+$ Collisions
Transverse polarization in e+e- collisions generates maximally entangled fermion pairs in QED processes and boosts entanglement in electroweak and Bhabha scattering.
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Searching for apparent baryon number violation in $\Lambda_c^+$ decays at the Super Tau-Charm Facility
STCF with 1 ab^{-1} can probe several-TeV new-physics scales in sterile-neutrino EFT and constrain an RPV SUSY parameter to ~0.1 TeV^{-2} for apparent BNV in unexplored Lambda_c+ channels.
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Long-lived sterile neutrinos from axionlike particles at the Super Tau-Charm Facility
STCF can reach |V_eN|^2 values one to two orders of magnitude below current bounds for heavy neutral leptons via displaced-vertex searches from ALP decays in D-meson production.