We extend the density-of-states approach to gauge systems (LLR method) to QCD at finite temperature and density with heavy quarks. The approach features an exponential error suppression and yields the Polyakov loop probability distribution function over a range of more than hundred orders of magnitude. SU(2) gauge theory is considered in the confinement and the high-temperature phase, and at finite densities of heavy quarks. In the latter case, a smooth rise of the density with the chemical potential is observed, and no critical phenomenon associated with deconfinement due to finite densities is found
Complex Langevin simulations allow numerical studies of theories that exhibit a sign problem, such a...
The XXV Internaitonal Symposium on Lattice Field Theory July 30 - August 4 2007 Regensburug, Germany...
Although Monte Carlo calculations using Importance Sampling have matured into the most widely employ...
The density-of-states method (Phys.Rev.Lett. 109 (2012) 111601) features an exponential error suppre...
We study the equation of state at finite temperature and density in two-flavor QCD with the renormal...
The exploration of the phase diagram of quantum chromodynamics (QCD) is of great importance to descr...
QCD at finite densities of heavy quarks is investigated using the density-of-states method. The phas...
In this work we investigate QCD at finite density with Dyson-Schwinger equations. In the first part ...
Kaczmarek O. Screening at finite temperature and density. In: PoS. Vol 2007. 2007: 043.We present l...
The study of quantum chromodynamics (QCD) at finite temperature and density provides important contr...
The XXIX Internaitonal Symposium on Lattice Field Theory, Lattice2011 July 11-16, 2011 The Village a...
Quark deconfinement phase transition at finite temperature and density is investigated in the frame ...
In this thesis we explore the characteristics of strongly interacting matter, described by Quantum C...
We explore the phase diagram of SU(2) Lattice Gauge Theory with dynamical fermions in the temperatur...
2-color QCD is the simplest QCD-like theory which is accessible to lattice simulations at finite den...
Complex Langevin simulations allow numerical studies of theories that exhibit a sign problem, such a...
The XXV Internaitonal Symposium on Lattice Field Theory July 30 - August 4 2007 Regensburug, Germany...
Although Monte Carlo calculations using Importance Sampling have matured into the most widely employ...
The density-of-states method (Phys.Rev.Lett. 109 (2012) 111601) features an exponential error suppre...
We study the equation of state at finite temperature and density in two-flavor QCD with the renormal...
The exploration of the phase diagram of quantum chromodynamics (QCD) is of great importance to descr...
QCD at finite densities of heavy quarks is investigated using the density-of-states method. The phas...
In this work we investigate QCD at finite density with Dyson-Schwinger equations. In the first part ...
Kaczmarek O. Screening at finite temperature and density. In: PoS. Vol 2007. 2007: 043.We present l...
The study of quantum chromodynamics (QCD) at finite temperature and density provides important contr...
The XXIX Internaitonal Symposium on Lattice Field Theory, Lattice2011 July 11-16, 2011 The Village a...
Quark deconfinement phase transition at finite temperature and density is investigated in the frame ...
In this thesis we explore the characteristics of strongly interacting matter, described by Quantum C...
We explore the phase diagram of SU(2) Lattice Gauge Theory with dynamical fermions in the temperatur...
2-color QCD is the simplest QCD-like theory which is accessible to lattice simulations at finite den...
Complex Langevin simulations allow numerical studies of theories that exhibit a sign problem, such a...
The XXV Internaitonal Symposium on Lattice Field Theory July 30 - August 4 2007 Regensburug, Germany...
Although Monte Carlo calculations using Importance Sampling have matured into the most widely employ...