English

Long-range interactions from $U\left(1\right)$ gauge fields via dimensional mismatch

Statistical Mechanics 2018-11-14 v1 Quantum Gases High Energy Physics - Theory

Abstract

We show how certain long-range models of interacting fermions in d+1d+1 dimensions are equivalent to U(1)U\left(1\right) gauge theories in D+1D+1 dimensions, with the dimension DD in which gauge fields are defined larger than the dimension dd of the fermionic theory to be simulated. For d=1d=1 it is possible to obtain an exact mapping, providing an expression of the fermionic interaction potential in terms of half-integer powers of the Laplacian. An analogous mapping can be applied to the kinetic term of the bosonized theory. A diagrammatic representation of the theories obtained by dimensional mismatch is presented, and consequences and applications of the established duality are discussed. Finally, by using a perturbative approach, we address the canonical quantization of fermionic theories presenting non-locality in the interaction term to construct the Hamiltonians for the effective theories found by dimensional reduction. We conclude by showing that one can engineer the gauge fields and the dimensional mismatch in order to obtain long-range effective Hamiltonians with 1/r1/r potentials.

Keywords

Cite

@article{arxiv.1708.06585,
  title  = {Long-range interactions from $U\left(1\right)$ gauge fields via dimensional mismatch},
  author = {Joao C. Pinto Barros and Marcello Dalmonte and Andrea Trombettoni},
  journal= {arXiv preprint arXiv:1708.06585},
  year   = {2018}
}
R2 v1 2026-06-22T21:20:26.656Z