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- Y. Aoki, Gergely Endrodi, Zsuzsanna Fodor, Stuart D Katz, Katherine Szabó
- Nature
- 2006

Quantum chromodynamics (QCD) is the theory of the strong interaction, explaining (for example) the binding of three almost massless quarks into a much heavier proton or neutron--and thus most of the… (More)

- Ferenc F Csikor, Zsuzsanna Fodor, J. Heitger
- 1999

We give the nonperturbative phase diagram of the four-dimensional hot electroweak phase transition. The Monte-Carlo analysis is done on lattices with different lattice spacings (a). A systematic… (More)

We report results of a study of the end point of the electroweak phase transition of the SU(2) gauge-Higgs model defined on a four-dimensional isotropic lattice with Nt = 2. Finite-size scaling study… (More)

- Zsuzsanna Fodor
- 2002

Based on universal arguments it is believed that there is a critical point (E) in QCD on the temperature (T) versus chemical potential (µ) plane, which is of extreme importance for heavy-ion… (More)

- Zsuzsanna Fodor
- 2004

A critical point (E) is expected in QCD on the temperature (T) versus baryonic chemical potential (µ) plane. Using a recently proposed lattice method for µ =0 we study dynamical QCD with n f =2+1… (More)

- Stephan Dürr, Zsuzsanna Fodor, +9 authors Grégory Vulvert
- Science
- 2008

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, and the Standard Model of particle… (More)

We propose a scenario in which a simple power-like primary spectrum for protons with sources at cosmological distances leads to a quantitative description of all the details of the observed cosmic… (More)

We present a detailed analysis of the phase transition in the standard model at finite temperature. Using an improved perturbation theory, where plasma masses are determined from a set of one-loop… (More)

- T. Antičić, Batshagai Baatar, +68 authors Jan Kochanowski
- 2010

Article is made available in accordance with the publisher's policy and may be subject to US copyright law. Please refer to the publisher's site for terms of use. The MIT Faculty has made this… (More)

- Sz. Borsányi, Zsuzsanna Fodor, +10 authors Katherine Szabó
- Nature
- 2016

Unlike the electroweak sector of the standard model of particle physics, quantum chromodynamics (QCD) is surprisingly symmetric under time reversal. As there is no obvious reason for QCD being so… (More)