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October 31, 2025Physical Review Letters5 citationsOpen Access

Counterdiabatic Driving with Performance Guarantees

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JFJernej Rudi FinžgarSNSimone NotarnicolaMCMadelyn Cain

Key Points

  • Our method achieves exponential convergence for ground state preparation, enhancing quantum efficiency.
  • Resources required scale inversely with the spectral gap, ensuring optimal performance.
  • Analysis employs a nonvariational expansion method, applicable in various quantum systems and settings.
  • Findings highlight the advantages of counterdiabatic driving to streamline quantum state preparation processes.

Abstract

Counterdiabatic (CD) driving has the potential to speed up adiabatic quantum state preparation by suppressing unwanted excitations. However, existing approaches either require intractable classical computations or are based on approximations that do not have performance guarantees. We propose and analyze a nonvariational, system-agnostic CD expansion method and analytically show that it converges exponentially quickly in the expansion order. In finite systems, the required resources scale inversely with the spectral gap, which we argue is asymptotically optimal. To extend our method to the thermodynamic limit and suppress errors stemming from high-frequency transitions, we leverage finite-time adiabatic protocols. In particular, we show that a time determined by the quantum speed limit is sufficient to prepare the desired ground state, without the need to optimize the adiabatic trajectory. Numerical tests of our method on the quantum Ising chain show that our method can outperform state-of-the-art variational CD approaches.

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Cite This Study

Finžgar et al. (2025) studied this question.

synapsesocial.com/papers/6903feedb25c631a42660102https://doi.org/10.1103/pqhl-nbtk
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