In lattice QCD and other field theories with a mass gap, the field variables in distant regions of a physically large lattice are only weakly correlated. Accurate stochastic estimates of the expectation values of local observables may therefore be obtained from a single representative field. Such master-field simulations potentially allow very large lattices to be simulated, but require various conceptual and technical issues to be addressed. In this talk, an introduction to the subject is provided and some encouraging results of master-field simulations of the SU(3) gauge theory are reported
We develop coarse-graining schemes for stochastic many-particle microscopic models with competing sh...
We study the relation between the dynamical critical behavior and the kinematics of stochastic multi...
We develop coarse-graining schemes for stochastic many-particle microscopic models with competing sh...
In lattice QCD and other field theories with a mass gap, the field variables in distant regions of a...
Because of the mass gap, lattice QCD simulations exhibit stochastic locality: distant regions of the...
Because of the mass gap, lattice QCD simulations exhibit stochastic locality: distant regions of the...
In master-field simulations of lattice QCD, the expectation values of interest are obtained from a s...
Using a stochastic differential equation for field configurations ina three-dimensional space lattic...
AbstractQuantum field theory of particles like electrons or quarks, which are the elementary constit...
The lattice formulation of Quantum Field Theory (QFT) can be exploited in many ways. We can derive t...
In this thesis we discuss two methods for calculating the mass-spectrum in field theories using Mont...
In many scientific disciplines, there is frequently a need to describe purely spatial interactions a...
This volume is the most up-to-date review on Lattice Gauge Theories and Monte Carlo Simulations. It ...
By Monte Carlo calculations on a 124 lattice we investigate four-dimensional SU(2) lattice gauge the...
Both theory and experiment strongly suggest that new phenomena await discovery above the energy rang...
We develop coarse-graining schemes for stochastic many-particle microscopic models with competing sh...
We study the relation between the dynamical critical behavior and the kinematics of stochastic multi...
We develop coarse-graining schemes for stochastic many-particle microscopic models with competing sh...
In lattice QCD and other field theories with a mass gap, the field variables in distant regions of a...
Because of the mass gap, lattice QCD simulations exhibit stochastic locality: distant regions of the...
Because of the mass gap, lattice QCD simulations exhibit stochastic locality: distant regions of the...
In master-field simulations of lattice QCD, the expectation values of interest are obtained from a s...
Using a stochastic differential equation for field configurations ina three-dimensional space lattic...
AbstractQuantum field theory of particles like electrons or quarks, which are the elementary constit...
The lattice formulation of Quantum Field Theory (QFT) can be exploited in many ways. We can derive t...
In this thesis we discuss two methods for calculating the mass-spectrum in field theories using Mont...
In many scientific disciplines, there is frequently a need to describe purely spatial interactions a...
This volume is the most up-to-date review on Lattice Gauge Theories and Monte Carlo Simulations. It ...
By Monte Carlo calculations on a 124 lattice we investigate four-dimensional SU(2) lattice gauge the...
Both theory and experiment strongly suggest that new phenomena await discovery above the energy rang...
We develop coarse-graining schemes for stochastic many-particle microscopic models with competing sh...
We study the relation between the dynamical critical behavior and the kinematics of stochastic multi...
We develop coarse-graining schemes for stochastic many-particle microscopic models with competing sh...