Identifying and harnessing dynamical phase transitions for quantum-enhanced sensing

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Abstract

We use the quantum Fisher information (QFI) to diagnose a dynamical phase transition (DPT) in a closed quantum system, which is usually defined in terms of nonanalytic behavior of a time-averaged order parameter. Employing the Lipkin-Meshkov-Glick model as an illustrative example, we find that the DPT correlates with a peak in the QFI that can be explained by a generic connection to an underlying excited-state quantum phase transition that also enables us to relate the scaling of the QFI with the behavior of the order parameter. Motivated by the QFI as a quantifier of metrologically useful correlations and entanglement, we also present a robust interferometric protocol that can enable DPTs as a platform for quantum-enhanced sensing.

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Guan, Q., & Lewis-Swan, R. J. (2021). Identifying and harnessing dynamical phase transitions for quantum-enhanced sensing. Physical Review Research, 3(3). https://doi.org/10.1103/PhysRevResearch.3.033199

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