Lattice Scalar Field Theory At Complex Coupling

ORAL

Abstract

Lattice scalar field theories encounter a sign problem when the coupling constant is complex. This is a close cousin of the real-time sign problems that afflict the lattice Schwinger-Keldysh formalism, and a more distant relative of the fermion sign problem that plagues calculations of QCD at finite density. We demonstrate the methods of complex normalizing flows and contour deformations on scalar fields in $0+1$ and $1+1$ dimensions, respectively. In both cases, intractable sign problems are readily bypassed. These methods extend to negative couplings, where the partition function can be defined only by analytic continuation. Finally, we examine the location of partition function zeros, and discuss their relation to the performance of these algorithms.

*S.L.~is supported by the U.S.~Department of Energy under Contract No.~DE-SC0017905. H.O.~and Y.Y.~are supported by the U.S.~Department of Energy under Contract No.~DE-FG02-93ER-40762.

Publication: arXiv:2205.12303

Presenters

  • Hyunwoo Oh

    • University of Maryland, College Park

Authors

  • Hyunwoo Oh

    • University of Maryland, College Park
  • Yukari Yamauchi

    • University of Maryland, College Park
  • Scott Lawrence

    • University of Colorado Boulder