4.6 Review

Quantum non-Gaussianity of light and atoms

期刊

PROGRESS IN QUANTUM ELECTRONICS
卷 83, 期 -, 页码 -

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.pquantelec.2022.100395

关键词

Nonclassical states; Quantum non-Gaussian states

资金

  1. Czech Science Foundation [21-13265X]
  2. EU H2020-WIDESPREAD-2020-5 project NONGAUSS [951737]

向作者/读者索取更多资源

This review introduces the theoretical analyses and applications of quantum non-Gaussian states of photons and phonons. It covers the operational criteria for tolerant photons and their extension to quantum non-Gaussian photon coincidences. It also compares the sensing capability and robustness of high-quality phononic Fock states.
Quantum non-Gaussian states of photons and phonons are conclusive and direct witnesses of higher-than-quadratic nonlinearities in optical and mechanical processes. Moreover, they are proven resources for quantum sensing, communication and error correction with diverse continuous-variable systems. This review introduces theoretical analyses of nonclassical and quantum non-Gaussian states of photons and phonons. It recapitulates approaches used to derive operational criteria for photons tolerant to optical losses, their application in experiments and their nowadays extension to quantum non-Gaussian photon coincidences. It extends to a recent comparison of quantum non-Gaussianity, including robustness to thermal noise, and sensing capability for high-quality phononic Fock states of single trapped cooled ions. The review can stimulate further development in the criteria of quantum non-Gaussian states and experimental effort to prepare and detect such useful features, navigating the community to advanced quantum physics and technology.

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