Hadron physics potential of future high-luminosity B-factories at the Upsilon(5S) and above
A. G. Drutskoy, Feng-Kun Guo, Felipe J. Llanes-Estrada, A. V., Nefediev, Juan M. Torres-Rincon

TL;DR
Future high-luminosity B-factories at the Upsilon(5S) resonance and above offer a wide range of hadron physics opportunities, including studies of bottomonium, exotic states, heavy baryons, and CP violation, with potential upgrades enhancing research scope.
Contribution
This paper outlines the diverse physics investigations enabled by upcoming high-luminosity B-factories in the specified energy range, highlighting new experimental possibilities and potential discoveries.
Findings
Potential for abundant Bs production and decay studies
Exploration of exotic bottomonium and tetraquark states
Possibility to produce triply-charmed baryons
Abstract
We point out the physics opportunities of future high-luminosity B-factories at the Upsilon(5S) resonance and above. In this paper we discuss numerous interesting investigations, which can be performed in the e+e- centre-of-mass energy region from the Upsilon(5S) and up to 11.5 GeV, where an efficient data taking operation should be possible with the planned B-factories. These studies include abundant Bs production and decay properties; independent confirmation and if found, exhaustive exploration of Belle's claimed charged bottomonia; clarification of puzzles of interquarkonium dipion transitions; extraction of the light quark mass ratio from hadronic Upsilon(5S) decays; analysis of quarkonium and exotic internal structure from open flavour decays, leading to severe SU(3) symmetry violations; clarification of whether a hybrid state has similar mass to the Upsilon(5S) bottomonium,…
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