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More About the Lattice Hamiltonian for Adjoint QCD$_2$

High Energy Physics - Theory 2025-04-17 v2 Strongly Correlated Electrons High Energy Physics - Lattice

Abstract

In our earlier work arXiv:2311.09334, we introduced a lattice Hamiltonian for Adjoint QCD2_2 using staggered Majorana fermions. We found the gauge invariant space of states explicitly for the gauge group SU(2)\text{SU}(2) and used them for numerical calculations of observables, such as the spectrum and the expectation value of the fermion bilinear. In this paper, we carry out a more in-depth study of our lattice model, extending it to any compact and simply-connected gauge group GG. We show how to find the gauge invariant space of states and use it to study various observables. We also use the lattice model to calculate the mixed 't Hooft anomalies of Adjoint QCD2_2 for arbitrary GG. We show that the matrix elements of the lattice Hamiltonian can be expressed in terms of the Wigner 6jj-symbols of GG. For G=SU(3)G = \text{SU}(3), we perform exact diagonalization for lattices of up to six sites and study the low-lying spectrum, the fermion bilinear condensate, and the string tension. We also show how to write the lattice strong coupling expansion for ground state energies and operator expectation values in terms of the Wigner 6jj-symbols. For SU(3)\text{SU}(3) we carry this out explicitly and find good agreement with the exact diagonalizations, and for SU(4)\text{SU}(4) we give expansions that can be compared with future numerical studies.

Keywords

Cite

@article{arxiv.2409.19164,
  title  = {More About the Lattice Hamiltonian for Adjoint QCD$_2$},
  author = {Ross Dempsey and Silviu S. Pufu and Benjamin T. Søgaard and Igor R. Klebanov},
  journal= {arXiv preprint arXiv:2409.19164},
  year   = {2025}
}

Comments

64 pages, 12 figures