Authors: Sylwester Kornowski
Applying the Scale-Symmetric Theory (SST), which describes the phase transitions of the inflation/Higgs field, we show that a light, neutral boson with a mass of 18.4 MeV that consists of four entangled parts (theory of neutrinos described within SST shows that there is valid the four-object symmetry), is the binder/precursor of the second Higgs boson with a mass of 742 GeV or/and 750 GeV. The ATOMKI group has adequate equipment to detect the light, neutral boson with a mass of about 18.4 MeV whereas the LHC experiments can show which one of the two possible mass states of the second composite Higgs boson dominates. The four-object symmetry and the atom-like structure of baryons lead to the resonant tetraneutron state and to the internal structure of the neutron stars/black-holes.
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[v1] 2016-06-10 12:42:00
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