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Study on Toponium: Spectrum and Associated Processes
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In this paper, we calculate the toponium spectrum in the potential model with the screened effects. Coulombic part is dominant for toponium, and the coefficient of the Coulomb potential is chosen from lattice QCD calculations at an infinite quark mass in accord with the ultrasoft scale choice. We also derive the relative E1 transitions, decays, and production.
Forward citations
Cited by 7 Pith papers
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Topped baryons from QCD sum rules
QCD sum rules in HQET predict ground-state singly topped baryon masses near 174 GeV, some 1.1-1.5 GeV above the top quark pole mass.
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Toponium Spectrum in the Complex-Energy Plane
Toponium's T-matrix poles survive at realistic top width, supporting a quasi-bound-state interpretation despite the spectrum appearing as a single broad peak.
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Phenomenology of Hypothetical Single-Top Hadronic States
QCD sum-rule calculations yield single-top baryon and meson masses near the top-quark mass, with a few channels slightly below the naive quark-sum threshold.
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Probing Yoctosecond Quantum Dynamics in Toponium Formation at Colliders
The authors claim that R_b near 343 GeV can separate instantaneous from delayed toponium formation at more than 5 sigma, but the delayed scenario is parameterized by an undetermined constant A.
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The S-wave topped meson
The first four S-wave t-bar-b and t-bar-c quasi-bound states are predicted roughly 5.1/5.4/5.6/5.7 GeV and 1.9/2.2/2.5/2.6 GeV above the top-quark mass.
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Examining possible doubly topped baryon configurations
QCD sum rules give doubly topped baryon masses of 345-350 GeV, essentially the sums of the constituent quark masses, with no sign of genuine binding.
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Mass and Decay Properties of Toponium Using SUSY QM Factorization Method
SUSY QM factorization of the Cornell potential yields toponium 1S masses 344.114 and 344.141 GeV, a 2.57 MeV gg width, and radii of 0.015–0.025 fm.
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