SCOAP3 Repository 4 records found  Search took 0.13 seconds. 
1. Massive Abelian Gauge Bosons in Front-form Hamiltonians / Głazek, Stanisław D.
It is shown how gauge bosons can be supplied with a mass term using the Higgs mechanism for the purpose of regulating Hamiltonians of Abelian gauge theories in the front form of quantum dynamics..
Published in Acta Physica Polonica B 50 (2019) 5-26 10.5506/APhysPolB.50.5 arXiv:1811.09728
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2. Approximate Hamiltonian for baryons in heavy-flavor QCD / Serafin, Kamil ; Gómez-Rocha, María ; More, Jai ; Głazek, Stanisław D.
Aiming at relativistic description of gluons in hadrons, the renormalization group procedure for effective particles (RGPEP) is applied to baryons in QCD of heavy quarks. [...]
Published in EPJC 78 (2018) 964 10.1140/epjc/s10052-018-6436-2
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3. Ridge effect, azimuthal correlations, and other novel features of gluonic string collisions in high energy photon-mediated reactions / Głazek, Stanisław D. ; Brodsky, Stanley J. ; Goldhaber, Alfred S. ; Brown, Robert W.
One of the remarkable features of high-multiplicity hadronic events in proton-proton collisions at the LHC is the fact that the produced particles appear as two “ridges”, opposite in azimuthal angle ϕ, with approximately flat rapidity distributions. [...]
Published in Physical Review D 97 (2018) 10.1103/PhysRevD.97.114021 arXiv:1805.08847
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4. Renormalized quark–antiquark Hamiltonian induced by a gluon mass ansatz in heavy-flavor QCD / Głazek, Stanisław D. ; Gómez-Rocha, María ; More, Jai ; Serafin, Kamil
In response to the growing need for theoretical tools that can be used in QCD to describe and understand the dynamics of gluons in hadrons in the Minkowski space–time, the renormalization group procedure for effective particles (RGPEP) is shown in the simplest available context of heavy quarkonia to exhibit a welcome degree of universality in the first approximation it yields once one assumes that beyond perturbation theory gluons obtain effective mass. [...]
Published in Physics letters B (2017) 10.1016/j.physletb.2017.08.018
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1 Głazek, S.D.
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