From fits of QGSM to hadron pT spectra, the paper infers a geometric mass sequence 0.25e^(n-1) GeV for hypothetical neutral hidden states and proposes them as dark matter.
Baryon Production at LHC Experiments: Average pt of Hyperons vs. Energy
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abstract
This paper examines the transverse momentum spectra of baryons in the multi-particle production at modern colliders using Quark-Gluon String Model (QGSM). It discusses 1) the difference in \Lambda^0 hyperon spectra at antiproton-proton vs. proton-proton reactions; 2) the growth of average transverse momenta of \Lambda hyperon with proton-proton collision energies and 3) the dependence of average p_t on the masses of mesons and baryons at the LHC energy 7 TeV. This analysis of baryon spectra led to the following conclusions. First, the fragmentation of antidiquark-diquark side of the pomeron diagram makes the major contribution to baryon production spectra in the asymmetric antiproton-proton reaction. Second, the average p_t's of hyperons steadily grow with energy on the range from 53 GeV to 7 TeV. Since no dramatic changes were seen in the characteristics of baryon production, the hadroproduction processes do not cause the "knee" in the cosmic ray proton spectra at the energies between Tevatron and LHC.
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Average Transverse Momenta of Hadrons at LHC Energy 7 TeV vs. Masses and Heavy Neutral Hadron States
From fits of QGSM to hadron pT spectra, the paper infers a geometric mass sequence 0.25e^(n-1) GeV for hypothetical neutral hidden states and proposes them as dark matter.