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Shortcuts to adiabaticity: concepts, methods, and applications

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arxiv 1904.08448 v2 pith:7HAEN3UV submitted 2019-04-17 quant-ph

classification quant-ph
keywords adiabaticityshortcutsmethodsapplicationsconceptssystemscontrollingparameters
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Shortcuts to adiabaticity (STA) are fast routes to the final results of slow, adiabatic changes of the controlling parameters of a system. The shortcuts are designed by a set of analytical and numerical methods suitable for different systems and conditions. A motivation to apply STA methods to quantum systems is to manipulate them on timescales shorter than decoherence times. Thus shortcuts to adiabaticity have become instrumental in preparing and driving internal and motional states in atomic, molecular, and solid-state physics. Applications range from information transfer and processing based on gates or analog paradigms to interferometry and metrology. The multiplicity of STA paths for the controlling parameters may be used to enhance robustness versus noise and perturbations or to optimize relevant variables. Since adiabaticity is a widespread phenomenon, STA methods also extended beyond the quantum world to optical devices, classical mechanical systems, and statistical physics. Shortcuts to adiabaticity combine well with other concepts and techniques, in particular, with optimal control theory, and pose fundamental scientific and engineering questions such as finding speed limits, quantifying the third law, or determining process energy costs and efficiencies. Concepts, methods, and applications of shortcuts to adiabaticity are reviewed and promising prospects are outlined, as well as open questions and challenges ahead.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Adiabatic vacua from linear complex structures

    gr-qc 2025-04 conditional novelty 6.0 of 10

    Adiabatic number operators and vacua for coupled bosonic systems are constructed order by order from a linear recursion for complex structures, generalizing WKB and Lewis-Riesenfeld invariant methods beyond a single mode.

  2. Driving interactions efficiently in a composite few-body system

    cond-mat.quant-gas 2019-08 conditional novelty 6.0 of 10

    A variational shortcut-to-adiabaticity protocol efficiently drives a few-body boson mixture to strongly interacting eigenstates, except when phase separation forces particles to tunnel through each other.

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