English

Detecting Nonclassicality and quantum non-Gaussianity of photon subtracted displaced Fock state

Quantum Physics 2024-04-29 v1

Abstract

In this paper, a quantitative investigation of the non-classical and quantum non-Gaussian characters of the photon-subtracted displaced Fock state ψ=akD(α)n|{\psi}\rangle=a^kD(\alpha)|{n}\rangle, where kk is number of photons subtracted, nn is Fock parameter, is performed by using a collection of measures like Wigner logarithmic negativity, linear entropy potential, skew information based measure, and relative entropy of quantum non-Gaussianity. It is noticed that the number of photons subtracted (kk) changes the nonclassicality and quantum non-Gaussianity in a significant amount in the regime of small values of the displacement parameter whereas Fock parameter (nn) presents a notable change in the large regime of the displacement parameter. In this respect, the role of the Fock parameter is found to be stronger as compared to the photon subtraction number. Finally, the Wigner function dynamics considering the effects of photon loss channel is used to show that the Wigner negativity can only be exposed by highly efficient detectors.

Keywords

Cite

@article{arxiv.2306.04490,
  title  = {Detecting Nonclassicality and quantum non-Gaussianity of photon subtracted displaced Fock state},
  author = {Deepak and Arpita Chatterjee},
  journal= {arXiv preprint arXiv:2306.04490},
  year   = {2024}
}

Comments

15 pages and 9 figures. arXiv admin note: substantial text overlap with arXiv:2109.12145 by other authors