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arXiv:2207.08945·v3·High Energy Physics — Lattice

Gauge-equivariant flow models for sampling in lattice field theories with pseudofermions

Ryan Abbott🇺🇸 · Michael S. Albergo🇺🇸 · Denis Boyda🇺🇸 · Kyle Cranmer🇺🇸 · Daniel C. Hackett🇺🇸 · Gurtej Kanwar🇨🇭 · Sébastien Racanière🇬🇧 · Danilo J. Rezende🇬🇧 · Fernando Romero-López🇺🇸 · Phiala E. Shanahan🇺🇸 · Betsy Tian🇺🇸 · Julian M. Urban🇩🇪

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Abstract

This work presents gauge-equivariant architectures for flow-based sampling in fermionic lattice field theories using pseudofermions as stochastic estimators for the fermionic determinant. This is the default approach in state-of-the-art lattice field theory calculations, making this development critical to the practical application of flow models to theories such as QCD. Methods by which flow-based sampling approaches can be improved via standard techniques such as even/odd preconditioning and the Hasenbusch factorization are also outlined. Numerical demonstrations in two-dimensional U(1) and SU(3) gauge theories with flavors of fermions are provided.

Comments: 15 pages, 7 figures. v3: accepted version for publication. New appendix C

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