نتایج جستجو برای: hadron interaction
تعداد نتایج: 580819 فیلتر نتایج به سال:
The inelasticity of hadron-carbon collisions for energies exceeding 100 TeV is estimated from the carbonemulsion chamber data at Pamirs to be 〈KC〉 = 0.65± 0.08. When combined with data on hadron-lead collisions taken at the same energy range it results in the K ∼ A mass number dependence of inelasticity. The evaluated partial inelasticity for secondary (ν > 1) interactions, Kν>1 ≃ 0.2, suggests...
Diffusion wake is an unambiguous part of the jet-induced medium response in high-energy heavy-ion collisions that leads to a depletion soft hadrons opposite direction jet propagation. New experimental data on $Z$-hadron correlation Pb+Pb at Large Hadron Collider show, however, enhancement both $Z$ and jet. Using coupled linear Boltzmann transport hydro model, we demonstrate modification partons...
An algorithm of Monte Carlo code for the production of fast hadron leader in the proton-(anti)proton interaction by QCD process is discussed.
Investigation of hadron interaction with nuclei is important source information about nuclear structure and mechanisms interaction. Approaches based on different potentials (optical model) or scattering matrix (S-matrix) are used for theoretical description appropriate experimental data.
The interaction of hadron is discussed on the basis of an extended particle model. We assume that the interaction between hadrons is clue to the coupling between currents carried by excitons excited in the particles, which is mediated by some intermediate field. This picture enables us to write clown all hadron interactions once this original interaction between excitons is given -thus leading ...
So far the static properties of hadrons have been introduced in various models. The static properties of hadrons (charge radius, magnetic moment, etc.) are useful for understanding the quark structure of hadron. In this work we have introduced the hypercentral constituent quark and isospin dependent potentials. Here constituent quarks interact with each other via a potential in which we have ta...
We summarize the lessons learned from studies of hard scattering processes in high–energy electron–proton collisions at HERA and antiproton–proton collisions at the Tevatron, with the aim of predicting new strong interaction phenomena observable in next–generation experiments at the Large Hadron Collider (LHC). Processes reviewed include inclusive deep–inelastic scattering (DIS) at small x, exc...
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