English

Spin Squeezing of One-Axis Twisting Model in The Presence of Phase Dephasing

Quantum Physics 2013-12-16 v1

Abstract

We present a detailed analysis of spin squeezing of the one-axis twisting model with a many-body phase dephasing, which is induced by external field fluctuation in a two-mode Bose-Einstein condensates. Even in the presence of the dephasing, our analytical results show that the optimal initial state corresponds to a coherent spin state θ0,ϕ0|\theta_{0}, \phi_0\rangle with the polar angle θ0=π/2\theta_0=\pi/2. If the dephasing rate γS1/3\gamma\ll S^{-1/3}, where SS is total atomic spin, we find that the smallest value of squeezing parameter (i.e., the strongest squeezing) obeys the same scaling with the ideal one-axis twisting case, namely ξ2S2/3\xi^2\propto S^{-2/3}. While for a moderate dephasing, the achievable squeezing obeys the power rule S2/5S^{-2/5}, which is slightly worse than the ideal case. When the dephasing rate γ>S1/2\gamma>S^{1/2}, we show that the squeezing is weak and neglectable.

Keywords

Cite

@article{arxiv.1312.3743,
  title  = {Spin Squeezing of One-Axis Twisting Model in The Presence of Phase Dephasing},
  author = {C. G. Ji and Y. C. Liu and G. R. Jin},
  journal= {arXiv preprint arXiv:1312.3743},
  year   = {2013}
}

Comments

14.2pages, 3 figures