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Slow approach to adiabaticity in many-body non-Hermitian systems: the Hatano-Nelson Model

Quantum Physics 2025-03-24 v2 Quantum Gases Strongly Correlated Electrons

Abstract

We explore the near adiabatic dynamics in a non-Hermitian quantum many-body system by investigating a finite-time ramp of the imaginary vector potential in the interacting Hatano-Nelson model. The excess energy, the Loschmidt echo, and the density imbalance are analyzed using bosonization and exact diagonalization. The energy becomes complex valued, despite the instantaneous Hamiltonian having the same real spectrum throughout. The adiabatic limit is approached very slowly through damped oscillations. The decay scales with τ1\tau^{-1} with τ\tau the ramp duration, while the oscillation period is 2L/v2L/v with vv the Fermi velocity and LL the system length. Yet, without the need for auxiliary controls, a shortcut to adiabaticity is found for ramp times commensurate with the period. Our work highlights the intricate interplay of adiabaticity and non-Hermitian many-body physics.

Keywords

Cite

@article{arxiv.2408.07122,
  title  = {Slow approach to adiabaticity in many-body non-Hermitian systems: the Hatano-Nelson Model},
  author = {Léonce Dupays and Adolfo del Campo and Balázs Dóra},
  journal= {arXiv preprint arXiv:2408.07122},
  year   = {2025}
}

Comments

13 pages, 5 figures