English

Exact eigenstates of multicomponent Hubbard models: SU($N$) magnetic $\eta$ pairing, weak ergodicity breaking, and partial integrability

Strongly Correlated Electrons 2024-12-16 v2 Quantum Gases Statistical Mechanics Superconductivity Quantum Physics

Abstract

We construct exact eigenstates of multicomponent Hubbard models in arbitrary dimensions by generalizing the η\eta-pairing mechanism. Our models include the SU(NN) Hubbard model as a special case. Unlike the conventional two-component case, the generalized η\eta-pairing mechanism permits the construction of eigenstates that feature off-diagonal long-range order and magnetic long-range order. These states form fragmented fermionic condensates due to a simultaneous condensation of multicomponent η\eta pairs. While the η\eta-pairing states in the SU(2) Hubbard model are based on the η\eta-pairing symmetry, the exact eigenstates in the NN-component system with N3N\geq 3 arise not from symmetry of the Hamiltonian but from a spectrum generating algebra defined in a Hilbert subspace. We exploit this fact to show that the generalized η\eta-pairing eigenstates do not satisfy the eigenstate thermalization hypothesis and serve as quantum many-body scar states. This result indicates a weak breakdown of ergodicity in the NN-component Hubbard models for N3N\geq 3. Furthermore, we show that these exact eigenstates constitute integrable subsectors in which the Hubbard Hamiltonian effectively reduces to a non-interacting model. This partial integrability causes various multicomponent Hubbard models to weakly break ergodicity. We propose a method of harnessing dissipation to distill the integrable part of the dynamics and elucidate a mechanism of non-thermalization caused by dissipation. This work establishes the coexistence of off-diagonal long-range order and SU(NN) magnetism in excited eigenstates of the multicomponent Hubbard models, which presents a possibility of novel out-of-equilibrium pairing states of multicomponent fermions. These models unveil a unique feature of quantum thermalization of multicomponent fermions, which can experimentally be tested with cold-atom quantum simulators.

Keywords

Cite

@article{arxiv.2205.07235,
  title  = {Exact eigenstates of multicomponent Hubbard models: SU($N$) magnetic $\eta$ pairing, weak ergodicity breaking, and partial integrability},
  author = {Masaya Nakagawa and Hosho Katsura and Masahito Ueda},
  journal= {arXiv preprint arXiv:2205.07235},
  year   = {2024}
}

Comments

35 pages, 4 figures. v2: numerical results added, published version