English

Quantum estimation of Kerr nonlinearity in driven-dissipative systems

Quantum Physics 2022-09-22 v1

Abstract

We mainly investigate the quantum measurement of Kerr nonlinearity in the driven-dissipative system. Without the dissipation, the measurement precision of the nonlinearity parameter χ\chi scales as "super-Heisenberg scaling" 1/N21/N^2 with NN being the total average number of particles (photons) due to the nonlinear generator. Here, we find that "super-Heisenberg scaling" 1/N3/21/N^{3/2} can also be obtained by choosing a proper interrogation time. In the steady state, the "super-Heisenberg scaling" 1/N3/21/N^{3/2} can only be achieved when the nonlinearity parameter is close to 0 in the case of the single-photon loss and the one-photon driving or the two-photon driving. The "super-Heisenberg scaling" disappears with the increase of the strength of the nonlinearity. When the system suffers from the two-photon loss in addition to the single-photon loss, the optimal measurement precision will not appear at the nonlinearity χ=0\chi=0 in the case of the one-photon driving. Counterintuitively, in the case of the two-photon driving we find that it is not the case that the higher the two-photon loss, the lower the measurement precision. It means that the measurement precision of χ\chi can be improved to some extent by increasing the two-photon loss.

Keywords

Cite

@article{arxiv.2204.05577,
  title  = {Quantum estimation of Kerr nonlinearity in driven-dissipative systems},
  author = {Dong Xie and Chunling Xu and An Min Wang},
  journal= {arXiv preprint arXiv:2204.05577},
  year   = {2022}
}

Comments

8pages,5figures

R2 v1 2026-06-24T10:45:26.231Z