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Effective $\mathbb{Z}_{3}$ model for finite-density QCD with tensor networks

Authors :
Bloch, Jacques
Lohmayer, Robert
Schweiss, Sophia
Unmuth-Yockey, Judah
Publication Year :
2021

Abstract

The tensor renormalization group is a promising numerical method used to study lattice statistical field theories. However, this approach is computationally expensive in 2+1 and 3+1 dimensions. Here we use tensor renormalization group methods to study an effective three-dimensional $\mathbb{Z}_{3}$ model for the heavy-quark, high-temperature, strong-coupling limit of single-flavor 3+1 dimensional quantum chromodynamics. Our results are cross-checked using the worm Monte Carlo algorithm. We present the phase diagram of the model through the measurement of the Polyakov loop, the nearest-neighbor Polyakov loop correlator, and their susceptibilities. The tensor renormalization group results are in good agreement with the literature<br />Comment: 8 pages, 5 figures, Lattice 2021 proceedings

Subjects

Subjects :
High Energy Physics - Lattice

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.2110.09499
Document Type :
Working Paper