English

Spontaneous Breaking of $U(1)$ Symmetry in Coupled Complex SYK Models

High Energy Physics - Theory 2020-12-30 v3 Strongly Correlated Electrons

Abstract

As shown in [1], two copies of the large NN Majorana SYK model can produce spontaneous breaking of a Z2Z_2 symmetry when they are coupled by appropriate quartic terms. In this paper we similarly study two copies of the complex SYK model coupled by a quartic term preserving the U(1)×U(1)U(1) \times U(1) symmetry. We also present a tensor counterpart of this coupled model. When the coefficient α\alpha of the quartic term lies in a certain range, the coupled large NN theory is nearly conformal. We calculate the scaling dimensions of fermion bilinear operators as functions of α\alpha. We show that the operator c1ic2ic_{1i}^\dagger c_{2i}, which is charged under the axial U(1)U(1) symmetry, acquires a complex dimension outside of the line of fixed points. We derive the large NN Dyson-Schwinger equations and show that, outside the fixed line, this U(1)U(1) symmetry is spontaneously broken at low temperatures because this operator acquires an expectation value. We support these findings by exact diagonalizations extrapolated to large NN.

Keywords

Cite

@article{arxiv.2006.07317,
  title  = {Spontaneous Breaking of $U(1)$ Symmetry in Coupled Complex SYK Models},
  author = {Igor R. Klebanov and Alexey Milekhin and Grigory Tarnopolsky and Wenli Zhao},
  journal= {arXiv preprint arXiv:2006.07317},
  year   = {2020}
}

Comments

36 pages, 16 figures; v2: some improvements; v3: version to appear in JHEP