In commonly used Monte Carlo algorithms for lattice gauge theories the integrated autocorrelation time of the topological charge is known to be exponentially-growing as the continuum limit is approached. This topological freezing, whose severity increases with the size of the gauge group, can result in potentially large systematics. To provide a direct quantification of the latter, we focus on Yang–Mills theory at a lattice spacing for which conventional methods associated to the decorrelation of the topological charge have an unbearable computational cost. We adopt the recently proposed parallel tempering on boundary conditions algorithm, which has been shown to remove systematic effects related to topological freezing, and compute glueba...
We analyze 2+1 dimensional Yang-Mills theory regularized on a lattice with twisted boundary conditio...
International audienceMaster-field simulations offer an approach to lattice QCD in which calculation...
We present some techniques for elucidating hadronic structure via lattice Monte Carlo calculations. ...
In commonly used Monte Carlo algorithms for lattice gauge theories the integrated autocorrelation ti...
It is well known that the topology of gauge configurations generated in a Markov Monte-Carlo chain f...
We simulate 4d SU(N) pure-gauge theories at large N using a parallel tempering scheme that combines ...
In lattice calculations, the approach to the continuum limit is hindered by the severe freezing of t...
In lattice calculations, the approach to the continuum limit is hindered by the severe freezing of t...
AbstractIn lattice calculations, the approach to the continuum limit is hindered by the severe freez...
In this work, we study various Monte Carlo methods for lattice gauge theories. The mass of the 0+ gl...
We make use of the global symmetries of the Yang-Mills theory on the lattice to design a new computa...
We perform Monte Carlo simulations of the CPN−1 model on the square lattice for N = 10, 21, and 41. ...
We present a multiscale thermalization algorithm for lattice gauge theory, which enables efficient p...
We present a multiscale thermalization algorithm for lattice gauge theory, which enables efficient p...
A major problem with periodic boundary condition on the gauge fields used in current lattice gauge t...
We analyze 2+1 dimensional Yang-Mills theory regularized on a lattice with twisted boundary conditio...
International audienceMaster-field simulations offer an approach to lattice QCD in which calculation...
We present some techniques for elucidating hadronic structure via lattice Monte Carlo calculations. ...
In commonly used Monte Carlo algorithms for lattice gauge theories the integrated autocorrelation ti...
It is well known that the topology of gauge configurations generated in a Markov Monte-Carlo chain f...
We simulate 4d SU(N) pure-gauge theories at large N using a parallel tempering scheme that combines ...
In lattice calculations, the approach to the continuum limit is hindered by the severe freezing of t...
In lattice calculations, the approach to the continuum limit is hindered by the severe freezing of t...
AbstractIn lattice calculations, the approach to the continuum limit is hindered by the severe freez...
In this work, we study various Monte Carlo methods for lattice gauge theories. The mass of the 0+ gl...
We make use of the global symmetries of the Yang-Mills theory on the lattice to design a new computa...
We perform Monte Carlo simulations of the CPN−1 model on the square lattice for N = 10, 21, and 41. ...
We present a multiscale thermalization algorithm for lattice gauge theory, which enables efficient p...
We present a multiscale thermalization algorithm for lattice gauge theory, which enables efficient p...
A major problem with periodic boundary condition on the gauge fields used in current lattice gauge t...
We analyze 2+1 dimensional Yang-Mills theory regularized on a lattice with twisted boundary conditio...
International audienceMaster-field simulations offer an approach to lattice QCD in which calculation...
We present some techniques for elucidating hadronic structure via lattice Monte Carlo calculations. ...