Scientific Reports (Oct 2023)

Classical analogue to driven quantum bits based on macroscopic pendula

  • Heribert Lorenz,
  • Sigmund Kohler,
  • Anton Parafilo,
  • Mikhail Kiselev,
  • Stefan Ludwig

DOI
https://doi.org/10.1038/s41598-023-45118-y
Journal volume & issue
Vol. 13, no. 1
pp. 1 – 8

Abstract

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Abstract Quantum mechanics increasingly penetrates modern technologies but, due to its non-deterministic nature seemingly contradicting our classical everyday world, our comprehension often stays elusive. Arguing along the correspondence principle, classical mechanics is often seen as a theory for large systems where quantum coherence is completely averaged out. Surprisingly, it is still possible to reconstruct the coherent dynamics of a quantum bit (qubit) by using a classical model system. This classical-to-quantum analogue is based on wave mechanics, which applies to both, the classical and the quantum world. In this spirit we investigate the dynamics of macroscopic physical pendula with a modulated coupling. As a proof of principle, we demonstrate full control of our one-to-one analogue to a qubit by realizing Rabi oscillations, Landau-Zener transitions and Landau-Zener-Stückelberg-Majorana interferometry. Our classical qubit demonstrator can help comprehending and developing useful quantum technologies.