English

Exact solution of a non-Hermitian $\mathscr{PT}$-symmetric Heisenberg spin chain

Quantum Physics 2025-07-21 v2 Statistical Mechanics High Energy Physics - Theory Mathematical Physics math.MP

Abstract

We construct the exact solution of a non-Hermitian PT\mathscr{PT}-symmetric isotropic Heisenberg spin chain with integrable boundary fields. We find that the system exhibits two types of phases we refer to as AA and BB phases. In the BB type phase, the PT\mathscr{PT}- symmetry remains unbroken and it consists of eigenstates with only real energies, whereas the AA type phase contains a PT\mathscr{PT}-symmetry broken sector comprised of eigenstates with only complex energies and a sector of unbroken PT\mathscr{PT}-symmetry with eigenstates of real energies. The PT\mathscr{PT}-symmetry broken sector consists of pairs of eigenstates whose energies are complex conjugates of each other. The existence of two sectors in the AA type phase is associated with the exponentially localized bound states at the edges with complex energies which are described by boundary strings. We find that both AA and BB type phases can be further divided into sub-phases which exhibit different ground states. We also compute the bound state wavefunction in one magnon sector and find that as the imaginary value of the boundary parameter is increased, the exponentially localized wavefunction broadens thereby protruding more into the bulk, which indicates that exponentially localized bound states may not be stabilized for large imaginary values of the boundary parameter.

Keywords

Cite

@article{arxiv.2301.06004,
  title  = {Exact solution of a non-Hermitian $\mathscr{PT}$-symmetric Heisenberg spin chain},
  author = {Pradip Kattel and Parameshwar R. Pasnoori and Natan Andrei},
  journal= {arXiv preprint arXiv:2301.06004},
  year   = {2025}
}

Comments

28 pages and 4 figures