We simulate Nf=2+1 QCD at the physical point combining open and periodic boundary conditions in a parallel tempering framework, following the original proposal by M. Hasenbusch for 2dCPN−1 models, which has been recently implemented and widely employed in 4dSU(N) pure Yang-Mills theories too. We show that using this algorithm it is possible to achieve a sizable reduction of the auto-correlation time of the topological charge in dynamical fermions simulations both at zero and finite temperature, allowing to avoid topology freezing down to lattice spacings as fine as a∼0.02 fm. Therefore, this implementation of the Parallel Tempering on Boundary Conditions algorithm has the potential to substantially push forward the investigation of the QCD vacuum properties by means of lattice simulations.
@article{arxiv.2404.14151,
title = {Full QCD with milder topological freezing},
author = {Claudio Bonanno and Giuseppe Clemente and Massimo D'Elia and Lorenzo Maio and Luca Parente},
journal= {arXiv preprint arXiv:2404.14151},
year = {2024}
}
Comments
26 pages, 7 figures. v2: expanded discussion about PTBC improvement over standard RHMC, improved estimate of tau_int(Q^2) with standard RHMC at finest lattice spacing, final results and conclusions unchanged, matches accepted version on JHEP