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Dynamical signatures of the Yang-Lee edge singularity in non-Hermitian systems

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arxiv 2407.20106 v2 pith:KBJNQIMA submitted 2024-07-29 cond-mat.quant-gas

classification cond-mat.quant-gas
keywords nonunitaryyang-leedynamicsedgenon-hermitiansystemsexceptionalfield
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abstract

The Yang-Lee edge singularity is an intriguing critical phenomenon characterized by nonunitary field theory. However, its experimental realization for interacting many-body systems remains elusive. We show that Yang-Lee edge singularities, regarded as many-body exceptional points, can be observed using both the self-normal and the associated-biorthogonal Loschmidt echoes, leveraging the advantages of nonunitary dynamics in non-Hermitian systems. The Loschmidt echoes are demonstrated to display unitary dynamics in the $\mathcal{PT}$-symmetric regime but exhibit nonunitary dynamics in the $\mathcal{PT}$ symmetry-broken regime, leading to a sharp change near an exceptional point. We hereby identify exceptional points in both the non-Hermitian transverse field Ising model and the Yang-Lee model, and determine the critical exponent that is consistent with nonunitary conformal field theory. This work provides a direct observation of Yang-Lee edge singularities in non-Hermitian many-body systems arising from nonunitary dynamics.

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  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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