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pro vyhledávání: '"Leder M."'
Autor:
Maagorzata Lucimiiska
Publikováno v:
SSRN Electronic Journal.
Akademický článek
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Publikováno v:
J.Phys.Conf.Ser.287:012023,2011
We present the current status of ongoing efforts to use functional methods, Dyson-Schwinger equations and functional renormalization group equations, for the description of the infrared regime of nonabelian (pure) gauge theories in the Coulomb gauge.
Externí odkaz:
http://arxiv.org/abs/1106.3044
Autor:
Reinhardt, H., Campagnari, D. R., Leder, M., Burgio, G., Pawlowski, J. M., Quandt, M., Weber, A.
I briefly review results obtained within the variational Hamiltonian approach to Yang-Mills theory in Coulomb gauge and confront them with recent lattice data. The variational approach is extended to non-Gaussian wave functionals including three- and
Externí odkaz:
http://arxiv.org/abs/1101.5098
Autor:
Reinhardt, H., Burgio, G., Campagnari, D. R., Epple, D., Feuchter, C., Leder, M., Pak, M., Pawlowski, J. M., Quandt, M., Schleifenbaum, W., Weber, A.
Publikováno v:
PoS QCD-TNT09:038,2009
I review results recently obtained within the Hamiltonian approach to Yang-Mills theory in Coulomb gauge. In particular, I will present results for the ghost and gluon propagators and compare these with recent lattice data. Furthermore, I will give a
Externí odkaz:
http://arxiv.org/abs/0911.0613
Autor:
Reinhardt, H., Burgio, G ., Campagnari, D., Epple, D., Leder, M., Pak, M., Quandt, M., Schleifenbaum, W.
Publikováno v:
PoS Confinement8:061,2008
Within the Hamiltonian approach to Yang-Mills theory in Coulomb gauge the ghost and gluon propagators are determined from a variational solution of the Yang-Mills Schroedinger equation showing both gluon and heavy quark confinement. The continuum res
Externí odkaz:
http://arxiv.org/abs/0812.3337
Within the Hamiltonian approach in Coulomb gauge the ghost and gluon propagators are determined from a variational solution of the Yang-Mills Schroedinger equation showing both gluon and heavy quark confinement. The continuum results are in good agre
Externí odkaz:
http://arxiv.org/abs/0807.4635
Publikováno v:
Russian Metallurgy (Metally); Jun2023, Vol. 2023 Issue 6, p683-687, 5p
Autor:
Zykova M; Department of Chemistry and Technology of Crystals, Mendeleev University of Chemical Technology, 125047 Moscow, Russia., Voronina E; Department of Chemistry and Technology of Crystals, Mendeleev University of Chemical Technology, 125047 Moscow, Russia., Chepurnov A; Skobeltsyn Institute of Nuclear Physics, Lomonosov Moscow State University, 119234 Moscow, Russia.; Radiation Physics Laboratory, Belgorod State National Research University, 308015 Belgorod, Russia., Leder M; PJSC 'VSMPO-AVISMA Corporation', 624760 Verkhnyaya Salda, Russia., Kornilova M; PJSC 'VSMPO-AVISMA Corporation', 624760 Verkhnyaya Salda, Russia., Tankeev A; PJSC 'VSMPO-AVISMA Corporation', 624760 Verkhnyaya Salda, Russia., Vlasov S; PJSC 'VSMPO-AVISMA Corporation', 624760 Verkhnyaya Salda, Russia., Chub A; Modern Technologies Ltd., 618541 Solikamsk, Russia., Gangapshev A; Baksan Neutrino Observatory, The Institute for Nuclear Research of the Russian Academy of Science, 117312 Moscow, Russia., Gezhaev A; Baksan Neutrino Observatory, The Institute for Nuclear Research of the Russian Academy of Science, 117312 Moscow, Russia., Tekueva D; Baksan Neutrino Observatory, The Institute for Nuclear Research of the Russian Academy of Science, 117312 Moscow, Russia., Avetisov I; Department of Chemistry and Technology of Crystals, Mendeleev University of Chemical Technology, 125047 Moscow, Russia.
Publikováno v:
Materials (Basel, Switzerland) [Materials (Basel)] 2024 Feb 09; Vol. 17 (4). Date of Electronic Publication: 2024 Feb 09.
Autor:
Leder, M. O.1 moleder@vsmpo-avisma.ru, Popov, M. V.1, Polyanskii, S. N.2, Butakov, S. V.3, Ol'kov, I. S.3, Bakina, V. V.3
Publikováno v:
Chemical & Petroleum Engineering. Nov2018, Vol. 54 Issue 7/8, p507-512. 6p. 1 Color Photograph, 1 Black and White Photograph, 1 Illustration, 3 Charts, 1 Graph.