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Many-body phase transitions in a non-Hermitian Ising chain

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arxiv 2311.11251 v2 pith:KNKGKNZO submitted 2023-11-19 cond-mat.str-el quant-ph

classification cond-mat.str-elquant-ph
keywords phasetransitiontransitionssecond-ordermany-bodymathcalenergyexceptional
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abstract

We study many-body phase transitions in a one-dimensional ferromagnetic transversed field Ising model with an imaginary field and show that the system exhibits three phase transitions: one second-order phase transition and two $\mathcal{PT}$ phase transitions. The second-order phase transition occurring in the ground state is investigated via biorthogonal and self-normal entanglement entropy, for which we develop an approach to perform finite-size scaling theory to extract the central charge for small systems. Compared with the second-order phase transition, the first $\mathcal{PT}$ transition is characterized by the appearance of an exceptional point in the full energy spectrum, while the second $\mathcal{PT}$ transition only occurs in specific excited states. Furthermore, we interestingly show that both of exceptional points are second-order in terms of scalings of imaginary parts of the energy. This work provides an exact solution for many-body phase transitions in non-Hermitian systems.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Dissipative Dynamical Phase Transition as a Complex Ising Model

    quant-ph 2024-12 accept novelty 6.0 of 10

    The decay of a global spin-string observable in a dissipative qubit chain is exactly described by a complex-field Ising model, yielding a transition that is first-order-like from one side and second-order-like from the other.

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