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May 15, 2026Physical review. A/Physical review, A0 citationsOpen Access

Globalized critical quantum metrology in the dynamics of the quantum Rabi model by an auxiliary nonlinear term

AAnonymous

Key Points

  • This work aims to extend the critical point of the quantum Rabi model using an auxiliary nonlinear term for enhanced measurement precision.
  • Introduced an auxiliary nonlinear term into the quantum Rabi model.
  • Illustrated a measurement scheme using quadrature dynamics with enhanced variances.
  • Analyzed the effects under decoherence.
  • Demonstrated globally accessible diverging quantum Fisher information throughout the coupling regime.
  • Achieved criticality-enhanced inverted variance with scaling relation at finite frequencies.
  • Confirmed high measurement precision persists despite decoherence effects.

Abstract

Quantum Rabi model (QRM) is a fundamental model for light-matter interactions, the finite-component quantum phase transition (QPT) in the QRM has established a paradigmatic application for critical quantum metrology (CQM). However, such a paradigmatic application is restricted to a local regime of the QPT which has only a single critical point. In this work we propose a globalized CQM in the QRM by introducing an auxiliary nonlinear term which is realizable and can extend the critical point to a continuous critical regime. As a consequence, a high measurement precision is globally available over the entire coupling regime from the original critical point of the QRM down to the weak-coupling limit, as demonstrated by the globally accessible diverging quantum Fisher information in dynamics. We illustrate a measurement scheme by quadrature dynamics, with globally criticality-enhanced inverted variance as well as the scaling relation with respect to finite frequencies. In particular, we find that the globally high measurement precisions still survive in the presence of decoherence. Our proposal paves a way to break the local limitation of QPT of the QRM in CQM and enables a broader application, with implications of applicability in realistic situation.

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Cite This Study

Anonymous (2026) studied this question.

synapsesocial.com/papers/6a06b7a1e7dec685947aa61bhttps://doi.org/10.1103/gbcp-2crx
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