Search Results - "Szabo, K"

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  1. 1

    Fluctuations and correlations in high temperature QCD by Bellwied, R., Borsányi, S., Fodor, Z., Katz, S. D., Pásztor, A., Ratti, C., Szabó, K. K.

    “…We calculate second- and fourth-order cumulants of conserved charges in a temperature range stretching from the QCD transition region towards the realm of…”
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  2. 2

    Hadronic Vacuum Polarization Contribution to the Anomalous Magnetic Moments of Leptons from First Principles by Borsanyi, Sz, Fodor, Z, Hoelbling, C, Kawanai, T, Krieg, S, Lellouch, L, Malak, R, Miura, K, Szabo, K K, Torrero, C, Toth, B C

    Published in Physical review letters (13-07-2018)
    “…We compute the leading, strong-interaction contribution to the anomalous magnetic moment of the electron, muon, and tau using lattice quantum chromodynamics…”
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  3. 3

    Lattice QCD Equation of State at Finite Chemical Potential from an Alternative Expansion Scheme by Borsányi, S., Fodor, Z., Guenther, J. N., Kara, R., Katz, S. D., Parotto, P., Pásztor, A., Ratti, C., Szabó, K. K.

    Published in Physical review letters (11-06-2021)
    “…In this Letter, we introduce a novel scheme for extrapolating the equation of state of QCD to finite chemical potential that features considerably improved…”
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  4. 4

    Higher order fluctuations and correlations of conserved charges from lattice QCD by Borsanyi, Szabolcs, Fodor, Zoltan, Guenther, Jana N., Katz, Sandor K., Pasztor, Attila, Portillo, Israel, Ratti, Claudia, Szabó, K. K.

    Published in The journal of high energy physics (01-10-2018)
    “…A bstract We calculate several diagonal and non-diagonal fluctuations of conserved charges in a system of 2+1+1 quark flavors with physical masses, on a…”
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  5. 5

    Calculation of the axion mass based on high-temperature lattice quantum chromodynamics by Borsanyi, S., Fodor, Z., Guenther, J., Kampert, K.-H., Katz, S. D., Kawanai, T., Kovacs, T. G., Mages, S. W., Pasztor, A., Pittler, F., Redondo, J., Ringwald, A., Szabo, K. K.

    Published in Nature (London) (03-11-2016)
    “…The mass of the axion, a particle that is central to many dark-matter theories, is calculated via the equation of state of the Universe and the temperature…”
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  6. 6

    Leading hadronic contribution to the muon magnetic moment from lattice QCD by Borsanyi, Sz, Fodor, Z., Guenther, J. N., Hoelbling, C., Katz, S. D., Lellouch, L., Lippert, T., Miura, K., Parato, L., Szabo, K. K., Stokes, F., Toth, B. C., Torok, Cs, Varnhorst, L.

    Published in Nature (London) (06-05-2021)
    “…The standard model of particle physics describes the vast majority of experiments and observations involving elementary particles. Any deviation from its…”
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  7. 7

    The QCD phase diagram for external magnetic fields by Bali, G. S., Bruckmann, F., Endrődi, G., Fodor, Z., Katz, S. D., Krieg, S., Schäfer, A., Szabó, K. K.

    Published in The journal of high energy physics (01-02-2012)
    “…A bstract The effect of an external (electro)magnetic field on the finite temperature transition of QCD is studied. We generate configurations at various…”
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  8. 8

    Up and Down Quark Masses and Corrections to Dashen's Theorem from Lattice QCD and Quenched QED by Fodor, Z, Hoelbling, C, Krieg, S, Lellouch, L, Lippert, Th, Portelli, A, Sastre, A, Szabo, K K, Varnhorst, L

    Published in Physical review letters (19-08-2016)
    “…In a previous Letter [Borsanyi et al., Phys. Rev. Lett. 111, 252001 (2013)] we determined the isospin mass splittings of the baryon octet from a lattice…”
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  9. 9

    A comprehensive investigation on the distribution of circulating follicular T helper cells and B cell subsets in primary Sjögren's syndrome and systemic lupus erythematosus by Szabó, K., Papp, G., Szántó, A., Tarr, T., Zeher, M.

    Published in Clinical and experimental immunology (01-01-2016)
    “…Summary Follicular T helper (Tfh) cells have a crucial role in regulating immune responses within secondary lymphoid follicles by directing B cell…”
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  10. 10

    Lattice Computation of the Nucleon Scalar Quark Contents at the Physical Point by Durr, S, Fodor, Z, Hoelbling, C, Katz, S D, Krieg, S, Lellouch, L, Lippert, T, Metivet, T, Portelli, A, Szabo, K K, Torrero, C, Toth, B C, Varnhorst, L

    Published in Physical review letters (29-04-2016)
    “…We present a QCD calculation of the u, d, and s scalar quark contents of nucleons based on 47 lattice ensembles with N_{f}=2+1 dynamical sea quarks, 5 lattice…”
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  11. 11

    Ab initio calculation of the neutron-proton mass difference by Borsanyi, Sz, Durr, S., Fodor, Z., Hoelbling, C., Katz, S. D., Krieg, S., Lellouch, L., Lippert, T., Portelli, A., Szabo, K. K., Toth, B. C.

    “…The existence and stability of atoms rely on the fact that neutrons are more massive than protons. The measured mass difference is only 0.14% of the average of…”
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  12. 12

    Precision SU(3) lattice thermodynamics for a large temperature range by Borsányi, Sz, Endrődi, G., Fodor, Z., Katz, S. D., Szabó, K. K.

    Published in The journal of high energy physics (01-07-2012)
    “…A bstract We present the equation of state (pressure, trace anomaly, energy density and entropy density) of the SU(3) gauge theory from lattice field theory in…”
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  13. 13

    Ab Initio Determination of Light Hadron Masses by Dürr, S, Fodor, Z, Frison, J, Hoelbling, C, Hoffmann, R, Katz, S.D, Krieg, S, Kurth, T, Lellouch, L, Lippert, T, Szabo, K.K, Vulvert, G

    “…More than 99% of the mass of the visible universe is made up of protons and neutrons. Both particles are much heavier than their quark and gluon constituents,…”
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  14. 14

    Freeze-out parameters: lattice meets experiment by Borsányi, S, Fodor, Z, Katz, S D, Krieg, S, Ratti, C, Szabó, K K

    Published in Physical review letters (09-08-2013)
    “…We present our results for ratios of higher order fluctuations of electric charge as functions of the temperature. These results are obtained in a system of…”
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  15. 15

    Freeze-out parameters from electric charge and baryon number fluctuations: is there consistency? by Borsanyi, S, Fodor, Z, Katz, S D, Krieg, S, Ratti, C, Szabo, K K

    Published in Physical review letters (01-08-2014)
    “…Recent results for moments of multiplicity distributions of net protons and net-electric charge from the STAR Collaboration are compared to lattice QCD results…”
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  16. 16

    High-precision scale setting in lattice QCD by Borsányi, Szabolcs, Dürr, Stephan, Fodor, Zoltán, Hoelbling, Christian, Katz, Sándor D., Krieg, Stefan, Kurth, Thorsten, Lellouch, Laurent, Lippert, Thomas, McNeile, Craig, Szabó, Kálmán K.

    Published in The journal of high energy physics (01-09-2012)
    “…A bstract Scale setting is of central importance in lattice QCD. It is required to predict dimensional quantities in physical units. Moreover, it determines…”
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  17. 17

    Factors shaping the composition of the cutaneous microbiota by Szabó, K., Erdei, L., Bolla, B. Sz, Tax, G., Bíró, T., Kemény, L.

    Published in British journal of dermatology (1951) (01-02-2017)
    “…Summary From birth, we are constantly exposed to bacteria, fungi and viruses, some of which are capable of transiently or permanently inhabiting our different…”
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  18. 18

    The QCD transition temperature: Results with physical masses in the continuum limit by Aoki, Y., Fodor, Z., Katz, S.D., Szabó, K.K.

    Published in Physics letters. B (30-11-2006)
    “…The transition temperature (Tc) of QCD is determined by Symanzik improved gauge and stout-link improved staggered fermionic lattice simulations. We use…”
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  19. 19

    Lattice QCD at the physical point: simulation and analysis details by Dürr, S., Fodor, Z., Hoelbling, C., Katz, S. D., Krieg, S., Kurth, T., Lellouch, L., Lippert, T., Szabó, K. K., Vulvert, G.

    Published in The journal of high energy physics (01-08-2011)
    “…We give details of our precise determination of the light quark masses m ud  = ( m u  +  m d )/2 and m s in 2 + 1 flavor QCD, with simulated pion masses down…”
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  20. 20

    Global patterns and drivers of avian extinctions at the species and subspecies level by Szabo, Judit K

    Published in PloS one (08-10-2012)
    “…Reviews the timing, spatial patterns, trends and causes of avian extinctions on a global scale. Identifies 279 ultrataxa (141 monotypic species and 138…”
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