Tudóstér: Nagy Sándor publikációi

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feltöltött közlemény: 67 Open Access: 28
2024
  1. Nagy, S., Polónyi, J.: First order phase transition with the functional renormalization group method.
    Phys. Rev. D. 110 (4), 1-19, 2024.
    Folyóirat-mutatók:
    Q1 Nuclear and High Energy Physics (2023)
    Q1 Physics and Astronomy (miscellaneous) (2023)
  2. Nagy, S.: Nonlocal Effects in Asymptotically Safe Gravity.
    Symmetry. 16 (8), 1-18, 2024.
    Folyóirat-mutatók:
    Q2 Chemistry (miscellaneous) (2023)
    Q2 Computer Science (miscellaneous) (2023)
    Q2 Mathematics (miscellaneous) (2023)
    Q2 Physics and Astronomy (miscellaneous) (2023)
2023
  1. Nagy, S., Sailer, K.: Interpolation Formulas for Asymptotically Safe Cosmology.
    Universe. 9 (4), 1-22, 2023.
    Folyóirat-mutatók:
    Q1 Physics and Astronomy (miscellaneous)
  2. Gégény, F., Sailer, K., Nagy, S.: On the Lorentz symmetry in conformally reduced quantum gravity.
    Class. Quantum Gravity. 40 (4), 1-8, 2023.
    Folyóirat-mutatók:
    Q1 Physics and Astronomy (miscellaneous)
2022
  1. Gégény, F., Nagy, S.: Complex couplings in renormalization.
    Int. J. Mod. Phys. A. 37 (11-12), 1-24, 2022.
    Folyóirat-mutatók:
    Q2 Astronomy and Astrophysics
    Q2 Atomic and Molecular Physics, and Optics
    Q3 Nuclear and High Energy Physics
  2. Nagy, S., Polónyi, J.: Renormalizing Open Quantum Field Theories.
    Universe. 8 (2), 127-148, 2022.
    Folyóirat-mutatók:
    Q1 Physics and Astronomy (miscellaneous)
2021
  1. Márton, I., Nagy, S., Bene, E., Vértesi, T.: Cyclic Einstein-Podolsky-Rosen steering.
    Phys. Rev. Research. 3 (4), 1-10, 2021.
  2. Steib, I., Nagy, S., Polónyi, J.: Renormalization in Minkowski space-time.
    Int. J. Mod. Phys. A. 36 (05), 1-21, 2021.
    Folyóirat-mutatók:
    Q2 Astronomy and Astrophysics
    Q2 Atomic and Molecular Physics, and Optics
    Q2 Nuclear and High Energy Physics
2020
  1. Gégény, F., Nagy, S.: Renormalization of the conformally reduced gravity with bilocal potential.
    Int. J. Mod. Phys. A. 35 (22), 1-16, 2020.
    Folyóirat-mutatók:
    Q3 Astronomy and Astrophysics
    Q2 Atomic and Molecular Physics, and Optics
    Q2 Nuclear and High Energy Physics
2019
  1. Péli, Z., Nagy, S., Sailer, K.: Phase structure of the Euclidean three-dimensional O(1) ghost model.
    Int. J. Mod. Phys. A. 34 (02), 1-24, 2019.
    Folyóirat-mutatók:
    Q3 Astronomy and Astrophysics
    Q2 Atomic and Molecular Physics, and Optics
    Q2 Nuclear and High Energy Physics
  2. Nagy, S., Sailer, K., Steib, I.: Renormalization of Lorentzian conformally reduced gravity.
    Class. Quantum Gravity. 36 (15), 1-15, 2019.
    Folyóirat-mutatók:
    Q1 Physics and Astronomy (miscellaneous)
  3. Steib, I., Nagy, S.: Renormalization of the bilocal sine-Gordon model.
    Int. J. Mod. Phys. A. 34 (21), 1-17, 2019.
    Folyóirat-mutatók:
    Q3 Astronomy and Astrophysics
    Q2 Atomic and Molecular Physics, and Optics
    Q2 Nuclear and High Energy Physics
2018
  1. Péli, Z., Nagy, S., Sailer, K.: Effect of the quartic gradient terms on the critical exponents of the Wilson-Fisher fixed point in O(N) models.
    Eur. Phys. J. A. 54 (2), 1-19, 2018.
    Folyóirat-mutatók:
    Q1 Nuclear and High Energy Physics
  2. Nagy, S., Polónyi, J., Steib, I.: Euclidean scalar field theory in the bilocal approximation.
    Phys. Rev. D. 97 (8), 1-11, 2018.
    Folyóirat-mutatók:
    D1 Physics and Astronomy (miscellaneous)
  3. Nagy, S., Fazekas, B., Péli, Z., Sailer, K., Steib, I.: Regulator dependence of fixed points in quantum Einstein gravity with R2 truncation.
    Class. Quantum Gravity. 35 (5), 1-10, 2018.
    Folyóirat-mutatók:
    D1 Physics and Astronomy (miscellaneous)
2017
  1. Kovács, J., Fazekas, B., Nagy, S., Sailer, K.: Quantum-classical transition in the Caldeira-Leggett model.
    Ann. Phys. 376 372-381, 2017.
    Folyóirat-mutatók:
    Q1 Physics and Astronomy (miscellaneous)
2016
  1. Nagy, S., Vértesi, T.: EPR Steering inequalities with Communication Assistance.
    Sci. Rep. 6 21634-, 2016.
    Folyóirat-mutatók:
    D1 Multidisciplinary
  2. Péli, Z., Nagy, S., Sailer, K.: Phase structure of the O(2) ghost model with higher-order gradient term.
    Phys. Rev. D. 94 (6), 1-15, 2016.
    Folyóirat-mutatók:
    D1 Physics and Astronomy (miscellaneous)
  3. Nagy, S., Polónyi, J., Steib, I.: Quantum renormalization group.
    Phys. Rev. D. 93 (2), 1-10, 2016.
    Folyóirat-mutatók:
    D1 Physics and Astronomy (miscellaneous)
  4. Péli, Z., Nagy, S., Sailer, K.: Triple point in the O(2) ghost model with higher-order gradient term.
    Phys. Rev. D. 94 (6), 1-8, 2016.
    Folyóirat-mutatók:
    D1 Physics and Astronomy (miscellaneous)
2015
  1. Kovács, J., Nagy, S., Sailer, K.: Asymptotic safety in the sine-Gordon model.
    Phys. Rev. D. 91 (4), 1-7, 2015.
  2. Kovács, J., Nagy, S., Sailer, K.: Optimized regulator for the quantized anharmonic oscillator.
    Int. J. Mod. Phys. A. 30 (12), 1550058-1-11, 2015.
    Folyóirat-mutatók:
    Q2 Astronomy and Astrophysics
    Q1 Atomic and Molecular Physics, and Optics
    Q2 Nuclear and High Energy Physics
  3. Sailer, K., Péli, Z., Nagy, S.: Particle in a cavity in one-dimensional bandlimited quantum mechanics.
    J. Phys. A-Math. Theor. 48 (7), 1-18, 2015.
    Folyóirat-mutatók:
    Q1 Mathematical Physics
    Q1 Modeling and Simulation
    Q1 Physics and Astronomy (miscellaneous)
    Q2 Statistical and Nonlinear Physics
    Q2 Statistics and Probability
2014
  1. Nagy, S.: Kvantumgravitáció és az aszimptotikus biztonság elve.
    Fiz. szle. 64 (12), 402-404, 2014.
  2. Nagy, S.: Lectures on renormalization and asymptotic safety.
    Ann. Phys. 350 310-346, 2014.
    Folyóirat-mutatók:
    D1 Physics and Astronomy (miscellaneous)
  3. Kovács, J., Nagy, S., Sailer, K.: Momentum dependent wave-function renormalization for the sine-Gordon model.
    Acta Phys. Debr. 48 (1), [1-9], 2014.
  4. Jentschura, U., Horváth, D., Nagy, S., Nándori, I., Trócsányi, Z., Ujvári, B.: Weighing the neutrino.
    Int. J. Mod. Phys. E-Nucl. Phys. 23 (1), 1-12, 2014.
    Folyóirat-mutatók:
    Q2 Nuclear and High Energy Physics
    Q2 Physics and Astronomy (miscellaneous)
2013
  1. Nagy, S., Fazekas, B., Juhász, L., Sailer, K.: Critical exponents in quantum Einstein gravity.
    Phys. Rev. D. 88 (11), 1-8, 2013.
  2. Nagy, S., Sailer, K.: Interplay of fixed points in scalar models.
    Int. J. Mod. Phys. A. 28 (26), 1-11, 2013.
    Folyóirat-mutatók:
    Q2 Astronomy and Astrophysics
    Q2 Atomic and Molecular Physics, and Optics
    Q2 Nuclear and High Energy Physics
  3. Kovács, J., Nagy, S., Sailer, K.: On optimization of the functional renormalization group applied to the quantized anharmonic oscillator.
    Acta Phys. Debr. 47 77-86, 2013.
  4. Romera, E., Real, R., Calixto, M., Nagy, S., Nagy, Á.: Renyi entropy of the U(3) vibron model.
    J. Math. Chem. 51 (2), 620-636, 2013.
    Folyóirat-mutatók:
    Q3 Applied Mathematics
    Q2 Chemistry (miscellaneous)
  5. Sailer, K., Péli, Z., Nagy, S.: Some consequences of the generalized uncertainty principle induced ultraviolet wave-vector cutoff in one-dimensional quantum mechanics.
    Phys. Rev. D. 87 (8), 1-22, 2013.
2012
  1. Nagy, S.: Critical exponents of the O(N) model in the infrared limit from functional renormalization.
    Phys. Rev. D. 86 (8), 1-7, 2012.
  2. Nagy, S.: Degeneracy induced scaling of the correlation length for periodic models.
    Nucl. Phys. B. 864 (1), 226-240, 2012.
    Folyóirat-mutatók:
    D1 Nuclear and High Energy Physics
  3. Nagy, S., Krizsán, J., Sailer, K.: Infrared fixed point in quantum Einstein gravity.
    J. High Energ. Phys. 07 102-119, 2012.
    Folyóirat-mutatók:
    Q1 Nuclear and High Energy Physics
  4. Romera, E., Real, R., Calixto, M., Nagy, S., Nagy, Á.: Rényi entropy of the U(3) vibron model.
    J. Math. Chem. 51 (2), 620-636, 2012.
    Folyóirat-mutatók:
    Q3 Applied Mathematics
    Q2 Chemistry (miscellaneous)
2011
  1. Nagy, S., Sailer, K.: Functional renormalization group for quantized anharmonic oscillator.
    Ann. Phys. 326 1839-1876, 2011.
    Folyóirat-mutatók:
    D1 Physics and Astronomy (miscellaneous)
  2. Pangon, V., Nagy, S., Polónyi, J., Sailer, K.: Onset of symmetry breaking by the functional RG method.
    Int. J. Mod. Phys. A. 26 (7-8), 1327-1345, 2011.
    Folyóirat-mutatók:
    Q2 Astronomy and Astrophysics
    Q2 Atomic and Molecular Physics, and Optics
    Q2 Nuclear and High Energy Physics
  3. Kovács, J., Nagy, S., Nándori, I., Sailer, K.: Renormalization of QCD2.
    J. High Energ. Phys. 1 1-17, 2011.
    Folyóirat-mutatók:
    Q1 Nuclear and High Energy Physics
2010
  1. Nándori, I., Nagy, S., Sailer, K., Trombettoni, A.: Phase Structure and Compactness.
    J. High Energ. Phys. 1009 1-21, 2010.
    Folyóirat-mutatók:
    Q1 Nuclear and High Energy Physics
  2. Pangon, V., Nagy, S., Polónyi, J., Sailer, K.: Quantum censorship in two dimensions.
    Phys. Lett. B. 694 (1), 89-93, 2010.
    Folyóirat-mutatók:
    D1 Nuclear and High Energy Physics
2009
  1. Nagy, S., Nándori, I., Polónyi, J., Sailer, K.: Functional renormalization group approach to the sine-Gordon model.
    Phys. Rev. Lett. 102 241603-1 - 241603-4, 2009.
    Folyóirat-mutatók:
    D1 Physics and Astronomy (miscellaneous)
  2. Nagy, S., Nándori, I., Sailer, K.: Topological phase transition as a crossover..
    Acta phys. Debr. 43 (1.), 44-50, 2009.
2008
  1. Kovács, K., Nagy, S., Hidalgo, R., Kun, F., Herrmann, H., Pagonabarraga, I.: Critical ruptures in a bundle of slowly relaxing fibers.
    Phys. Rev. E. 77 (3), 036102, 2008.
    Folyóirat-mutatók:
    D1 Condensed Matter Physics
    Q1 Statistical and Nonlinear Physics
    Q1 Statistics and Probability
  2. Kun, F., Nagy, S.: Damage process of a fiber bundle with a strain gradient.
    Phys. Rev. E. 77 (1), 016608, 2008.
    Folyóirat-mutatók:
    D1 Condensed Matter Physics
    Q1 Statistical and Nonlinear Physics
    Q1 Statistics and Probability
  3. Nagy, S., Nándori, I., Polónyi, J., Sailer, K.: Generalized universality in the massive sine-Gordon model.
    Phys. Rev., D. 77 (2), 025026, 2008.
2007
  1. Nándori, I., Vad, K., Mészáros, S., Jentschura, U., Nagy, S., Sailer, K.: Applicability of layered sine: Gordon models to layered superconductors: II. The case of magnetic coupling.
    J. Phys., Condens. Matter. 192007.
    Folyóirat-mutatók:
    Q1 Condensed Matter Physics
    D1 Materials Science (miscellaneous)
  2. Schram, Z., Nagy, S.: Casimir energy on a lattice.
    Acta phys. Debr. 41 153, 2007.
  3. Nándori, I., Jentschura, U., Sailer, K., Vad, K., Mészáros, S., Nagy, S.: On the applicability of the layered sine: Gordon model for Josephson-coupled high-Tc layered superconductors.
    J. Phys., Condens. Matter. 192007.
    Folyóirat-mutatók:
    Q1 Condensed Matter Physics
    D1 Materials Science (miscellaneous)
  4. Nagy, S., Nándori, I., Polónyi, J., Sailer, K.: Renormalizable parameters of the sine-Gordon model.
    Phys. Lett. B. 647 152-158, 2007.
    Folyóirat-mutatók:
    D1 Nuclear and High Energy Physics
  5. Nagy, S., Nándori, I., Sailer, K.: Renormalization of sine: Gordon type models.
    Acta Phys. Chim. Debr. 41 147, 2007.
  6. Achard, P., The L3 Collaboration: Study of inclusive strange-baryon production and search for pentaquarks in two-photon collisions at LEP.
    Eur. phys. j., C. 49 (2), 395-410, 2007.
  7. Achard, P., The L3 Collaboration: Study of resonance formation in the mass region 1400-1500 MeV through the reaction gamma gamma -> K0sK+-Pi-+.
    JHEP. 2007 (3), 2007.
2005
  1. Guevara, P., The L3 Collaboration: Measurement of the atmospheric muon spectrum from 20 to 3000 GeV.
    Nucl. Phys. B Proc. Suppl. 143 (1-3), 500-500, 2005.
  2. Nándori, I., Nagy, S., Sailer, K., Jentschura, U.: Renormalization-group analysis of layered sine-Gordon type models.
    Nucl. Phys. B. 725 (3), 467-492, 2005.
    Folyóirat-mutatók:
    D1 Nuclear and High Energy Physics
  3. Unger, M., The L3 Collaboration: Results from L3+C.
    Int. J. Mod. Phys. A. 20 (29), 6928-6931, 2005.
  4. Coultre, P., The L3+C Collaboration: Search for burst signals from point sources.
    Int. J. Mod. Phys. A. 20 (29), 6962-6964, 2005.
2004
  1. Nagy, S., Polónyi, J., Sailer, K.: Periodic ground state for the charged massive Schwinger model.
    Phys. Rev. D. 70 (10), 1-23, 2004.
2000
  1. Nagy, S., Sailer, K.: Search for periodic vacuum in QED2.
    Acta Physica Hungarica New Series Heavy Ion Physics. 11 (1-2), 67-83, 2000.
    Folyóirat-mutatók:
    Q4 Nuclear and High Energy Physics
    Q3 Physics and Astronomy (miscellaneous)
1997
  1. Bayatian, G., Bondár, T., Juhász, S., Marian, G., Nagy, S., Raics, P., Szabó, J., Szabó, Z., Szegedi, S., Szillási, Z., Sztaricskai, T., Zilizi, G.: CMS, The muon project-alignment.
    CERN technical design reports, CERN/LHCC 97-32 CMS TDR 3 339, 1997.
1996
  1. Behrens, M., Tuchscherer, H., Raics, P., Zilizi, G., Juhász, S., Szillási, Z., Baksay, L., Szegedi, S., Szabó, J., Sztaricskai, T., Nagy, S., Marian, G., Bencze, G., Ádám, A., Kornis, J.: A precision displacement monitoring system for silicon strip detectors.
    Bull. Am. Phys. Soc. 41 1656, 1996.
1995
  1. Raics, P., Sztaricskai, T., Szabó, J., Nagy, S., Pintér, T., Tilky, P.: Corrosion monitoring for primary loops by in-situ gamma-spectrometry.
    In: Proceedings International Symposium on Activity Transport in Water Cooled Nuclear Power Reactors, Ottawa, Canada, Oct. 24-25. 1995, AECL, Ottawa, RC-1334, 1995.
  2. Raics, P., Sztaricskai, T., Szabó, J., Nagy, S., Pintér, T., Tilky, P.: Diagnostic possibilities of primary loops by in-situ gamma-spectrometry.
    In: Advances in Safety Related Diagnostics and Early Failure Detection Systems. TMC Vienna, Nov. 20-24. 1995, IAEA, Vienna, J4-TC698, 1995.
  3. Sztaricskai, T., Raics, P., Szabó, J., Nagy, S., Nieder, D.: In-situ measurements of radioactive corrosion deposits along the primary loops of PWR reactors.
    In: Proceedings of 2nd International Seminar on Primary and Secondary Side Water Chemistry of Nuclear Power Plants. Balatonfüred, September 19-23. 1995, Nuclear Power Plant Ltd., Paks, 37-42, 1995.
1992
  1. Raics, P., Nagy, S., Szegedi, S., Kornilov, N., Kagalenko, A.: Cross section measurements of neutron induced reactions on the zirconium isotopes in the energy range of 5.4 to 12.3 MeV.
    Nuclear Data for Science and Technology 1992.
  2. Egelba, S., Usman, K., Ibrahim, S., Ige, T., Nagy, S., Csikai, G.: Neutron field produced by a kaman A-711 sealed tube generator.
    J. Radioanal. Nucl. Chem. Lett 1992.
1990
  1. Raics, P., Nagy, S., Daróczy, S., Kornilov, N.: Measurement of the cross sections for the 238-U(n,2n) and 232-Th(n,2n) reaktions in the 13.5 - 14. 8 MeV energy range..
    INDC/HUN/-029/L 1990.
feltöltött közlemény: 67 Open Access: 28
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