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Observing time-dependent energy level renormalisation in an ultrastrongly coupled open system

Author

Listed:
  • Alessandra Colla

    (University of Freiburg
    Università degli Studi di Milano)

  • Florian Hasse

    (University of Freiburg)

  • Deviprasath Palani

    (University of Freiburg)

  • Tobias Schaetz

    (University of Freiburg
    University of Freiburg)

  • Heinz-Peter Breuer

    (University of Freiburg
    University of Freiburg)

  • Ulrich Warring

    (University of Freiburg)

Abstract

Understanding how strong coupling and memory effects influence energy levels in open quantum systems is a fundamental challenge. Here, we experimentally probe these effects in a two-level open system coupled to a single-mode quantum environment, using Ramsey interferometry in a trapped ion. Operating in the strong coupling regime, we observe both dissipative effects and time-dependent energy shifts of up to 15% of the bare system frequency, with the total system effectively isolated from external environments. These dynamic shifts, likely ubiquitous across quantum platforms, arise solely from ultra-strong system-mode interactions and correlation build-up and are accurately predicted by the minimal-dissipation Ansatz. Our approach identifies these as generalised Lamb shifts, matching conventional predictions on time-average. We provide experimental fingerprints supporting the Ansatz of minimal-dissipation, thereby suggesting it as a testable quantum thermodynamics framework and establishing a foundation for future benchmarks in strong-coupling quantum thermodynamics and related technologies.

Suggested Citation

  • Alessandra Colla & Florian Hasse & Deviprasath Palani & Tobias Schaetz & Heinz-Peter Breuer & Ulrich Warring, 2025. "Observing time-dependent energy level renormalisation in an ultrastrongly coupled open system," Nature Communications, Nature, vol. 16(1), pages 1-8, December.
  • Handle: RePEc:nat:natcom:v:16:y:2025:i:1:d:10.1038_s41467-025-57840-4
    DOI: 10.1038/s41467-025-57840-4
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